1,121 research outputs found
Limits on WWZ and WW\gamma couplings from p\bar{p}\to e\nu jj X events at \sqrt{s} = 1.8 TeV
- Author
- Abbott B
- Abolins M
- Acharya BS
- Adam I
- Adams DL
- Adams M
- Ahn S
- Aihara H
- Alves GA
- Amidi E
- Amos N
- Anderson EW
- Astur R
- Baarmand MM
- Baden A
- Balamurali V
- Balderston J
- Baldin B
- Banerjee S
- Bantly J
- Bartlett JF
- Bazizi K
- Belyaev A
- Beri SB
- Bertram I
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Biswas N
- Blazey G
- Blessing S
- Bloom P
- Boehnlein A
- Bojko NI
- Borcherding F
- Borders J
- Boswell C
- Brandt A
- Brock R
- Bross A
- Buchholz D
- Burtovoi VS
- Butler JM
- Carvalho W
- Casey D
- Casilum Z
- CastillaValdez H
- Chakraborty D
- Chang SM
- Chekulaev SV
- Chen LP
- Chen W
- Choi S
- Chopra S
- Choudhary BC
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Cobau WG
- Cochran J
- Cooper WE
- Cretsinger C
- CullenVidal D
- Cummings MAC
- Cutts D
- Dahl OI
- daMotta H
- Davis K
- De K
- DelSignore K
- Demarteau M
- deMiranda JM
- Denisov D
- Denisov SP
- Diehl HT
- Diesburg M
- DiLoreto G
- Draper P
- Ducros Y
- Dudko LV
- Dugad SR
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Evdokimov VN
- Fahland T
- Fatyga M
- Fatyga MK
- Featherly J
- Feher S
- Fein D
- Ferbel T
- Finocchiaro G
- Fisk HE
- Fisyak Y
- Flattum E
- Forden GE
- Fortner M
- Frame KC
- Fuess S
- Gallas E
- Galyaev AN
- Gartung P
- Geld TL
- Genik RJ
- Genser K
- Gerber CE
- Gibbard B
- Glenn S
- Gobbi B
- Goforth M
- Goldschmidt A
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Grannis PD
- Green DR
- Green J
- Greenlee H
- Grim G
- Grinstein S
- Grossman N
- Grudberg P
- Grunendahl S
- Guglielmo G
- Guida JA
- Guida JM
- Gupta A
- Gurzhiev SN
- Gutierrez P
- Gutnikov YE
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hahn KS
- Hall RE
- Hansen S
- Hauptman JM
- Hedin D
- Heinson AP
- Heintz U
- HernandezMontoya R
- Heuring T
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Hoftun JS
- Hsieh F
- Hu T
- Hu T
- Huehn T
- Ito AS
- James E
- Jaques J
- Jerger SA
- Jesik R
- Jiang JZY
- JoffeMinor T
- Johns K
- Johnson M
- Jonckheere A
- Jones M
- Jostlein H
- Jun SY
- Jung CK
- Kahn S
- Kalbfleisch G
- Kang JS
- Kehoe R
- Kelly ML
- Kim CL
- Kim SK
- Klatchko A
- Klima B
- Klopfenstein C
- Klyukhin VI
- Kochetkov VI
- Kohli JM
- Koltick D
- Kostritskiy AV
- Kotcher J
- Kotwal AV
- Kourlas J
- Kozelov AV
- Kozlovski EA
- Krane J
- Krishnaswamy MR
- Krzywdzinski S
- Kunori S
- Lami S
- Lan H
- Lander R
- Landry F
- Landsberg G
- Lauer B
- Leflat A
- Li H
- Li J
- LiDemarteau QZ
- Lima JGR
- Lincoln D
- Linn SL
- Linnemann J
- Lipton R
- Liu Q
- Liu YC
- Lobkowicz F
- Loken SC
- Lokos S
- Lueking L
- Lyon AL
- Maciel AKA
- Madaras RJ
- Madden R
- MaganaMendoza L
- Mani S
- Mao HS
- Markeloff R
- Markosky L
- Marshall T
- Martin MI
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McDonald J
- McKibben T
- McKinley J
- McMahon T
- Melanson HL
- Merkin M
- Merritt KW
- Miettinen H
- Mincer A
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Mooney P
- Murphy C
- Nang F
- Narain M
- Narasimham VS
- Narayanan A
- Neal HA
- Negret JP
- Nemethy P
- Nicola M
- Norman D
- Oesch L
- Oguri V
- Oltman E
- Oshima N
- Owen D
- Padley P
- Pang M
- Para A
- Pischalnikov Y
- Podstavkov VM
- Pope BG
- Prosper HB
- Protopopescu S
- Qian J
- Quintas PZ
- Raja R
- Rajagopalan S
- Ramirez O
- Rasmussen L
- Reucroft S
- Rijssenbeek M
- Rockwell T
- Roe NA
- Rubinov P
- Ruchti R
- Rutheroford J
- SanchezHernandez A
- Santoro A
- Sawyer L
- Schamberger RD
- Schellman H
- Sculli J
- Shabalina E
- Shaffer C
- Shankar HC
- Shivpuri RK
- Shupe M
- Singh H
- Singh JB
- Sirotenko V
- Smart W
- Smith A
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Sood PM
- Sosebee M
- Sotnikova N
- Souza M
- Spadafora AL
- Stephens RW
- Stevenson ML
- Stewart D
- Stoianova DA
- Stoker D
- Strauss M
- Streets K
- Strovink M
- Sznajder A
- Tamburello P
- Tarazi J
- Tartaglia M
- Thomas TLT
- Thompson J
- Trippe TG
- Tuts PM
- Varelas N
- Varnes EW
- Vititoe D
- Volkov AA
- Vorobiev AP
- Wahl HD
- Wang G
- Warchol J
- Watts G
- Wayne M
- Weerts H
- White A
- White JT
- Wightman JA
- Willis S
- Wimpenny SJ
- Wirjawan JVD
- Womersley J
- Won E
- Wood DR
- Xu H
- Yamada R
- Yamin P
- Yanagisawa C
- Yang J
- Yasuda T
- Yepes P
- Yoshikawa C
- Youssef S
- Yu J
- Yu Y
- Zhu ZH
- Zieminska D
- Zieminski A
- Zverev EG
- Zylberstejn A
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 15/05/1997
- Field of study
We present limits on anomalous WWZ and WW-gamma couplings from a search for
WW and WZ production in p-bar p collisions at sqrt(s)=1.8 TeV. We use p-bar p
-> e-nu jjX events recorded with the D0 detector at the Fermilab Tevatron
Collider during the 1992-1995 run. The data sample corresponds to an integrated
luminosity of 96.0+-5.1 pb^(-1). Assuming identical WWZ and WW-gamma coupling
parameters, the 95% CL limits on the CP-conserving couplings are
-0.33<lambda<0.36 (Delta-kappa=0) and -0.43<Delta-kappa<0.59 (lambda=0), for a
form factor scale Lambda = 2.0 TeV. Limits based on other assumptions are also
presented.Comment: 11 pages, 2 figures, 2 table
Search For Heavy Pointlike Dirac Monopoles
- Author
- Abbott B
- Abolins M
- Acharya BS
- Adam I
- Adams DL
- Adams M
- Ahn S
- Aihara H
- Alves GA
- Amos N
- Anderson EW
- Astur R
- Baarmand MM
- Babukhadia L
- Baden A
- Balamurali V
- Balderston J
- Baldin B
- Banerjee S
- Bantly J
- Barberis E
- Bartlett JF
- Belyaev A
- Beri SB
- Bertram I
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Biswas N
- Blazey G
- Blessing S
- Bloom P
- Boehnlein A
- Bojko NI
- Borcherding F
- Boswell C
- Brandt A
- Brock R
- Bross A
- Buchholz D
- Burtovoi VS
- Butler JM
- Carvalho W
- Casey D
- Casilum Z
- Castilla-Valdez H
- Chakraborty D
- Chang SM
- Chekulaev SV
- Chen LP
- Chen W
- Choi S
- Chopra S
- Choudhary BC
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Coban WG
- Cochran J
- Collaboration DO
- Coney L
- Cooper WE
- Cretsinger C
- Cullen-Vidal D
- Cummings MAC
- Cutts D
- da Motta H
- Dahl OI
- Davis K
- De K
- Del Signore K
- Demarteau M
- Denisov D
- Denisov SP
- Di Loreto G
- Diehl HT
- Diesburg M
- Draper P
- Ducros Y
- Dudko LV
- Dugad SR
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Evdokimov VN
- Fahland T
- Fatyga MK
- Feher S
- Fein D
- Ferbel T
- Finocchiaro G
- Fisk HE
- Fisyak Y
- Flattum E
- Forden GE
- Fortner M
- Frame KC
- Fuess S
- Gallas E
- Galyaev AN
- Gartung P
- Gavrilov V
- Geld TL
- Genik RJ
- Genser K
- Gerber CE
- Gershtein Y
- Gibbard B
- Glenn S
- Gobbi B
- Goldschmidt A
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Grannis PD
- Green DR
- Greenlee H
- Grinstein S
- Grudberg P
- Grunendahl S
- Guglielmo G
- Guida JA
- Guida JM
- Gupta A
- Gurzhiev SN
- Gutierrez G
- Gutierrez P
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hahn KS
- Hall RE
- Hanlet P
- Hansen S
- Hauptman JM
- Hedin D
- Heinson AP
- Heintz U
- Hernandez-Montoya R
- Heuring T
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Hoftun JS
- Hsieh F
- Hu T
- Hu T
- Huehn T
- Ito AS
- James E
- Jaques J
- Jerger SA
- Jesik R
- Jiang JZY
- Joffe-Minor T
- Johns K
- Johnson M
- Jonckheere A
- Jones M
- Jostlein H
- Jun SY
- Jung CK
- Kahn S
- Kalbfleisch G
- Kang JS
- Karmanov D
- Karmgard D
- Kehoe R
- Kelly ML
- Kim CL
- Kim SK
- Klima B
- Klopfenstein C
- Kohli JM
- Koltick D
- Kostritskiy AV
- Kotcher J
- Kotwal AV
- Kourlas J
- Kozelov AV
- Kozlovsky EA
- Krane J
- Krishnaswamy MR
- Krzywdzinski S
- Kuleshov S
- Kumori S
- Landry F
- Landsberg G
- Laner B
- Leflat A
- Li H
- Li J
- Li-Demarteau QZ
- Lima JGR
- Lincoln D
- Linn SL
- Linnemann J
- Lipton R
- Liu YC
- Lobkowicz F
- Loken SC
- Lokos S
- Lueking L
- Lyon AL
- Maciel AKA
- Madaras RJ
- Madden R
- Magana-Mendoza L
- Manankov V
- Mani S
- Mao HS
- Markeloff R
- Marshall T
- Martin MI
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McDonald J
- McKibben T
- McKinley J
- McMahon T
- Melanson HL
- Merkin M
- Merritt KW
- Miettinen H
- Mincer A
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Mooney P
- Murphy C
- Nang F
- Narain M
- Narasimham VS
- Narayanan A
- Neal HA
- Negret JP
- Nemethy P
- Norman D
- Oesch L
- Oguri V
- Oliveira E
- Oltman E
- Oshima N
- Owen D
- Padley P
- Para A
- Park YM
- Partridge R
- Parua N
- Paterno M
- Pawlik B
- Perkins J
- Peters M
- Piegaia R
- Piekarz H
- Pischalnikov Y
- Pope BG
- Prosper HB
- Protopopescu S
- Qian J
- Quintas PZ
- Raja R
- Rajagopalan S
- Ramirez O
- Rasmussen L
- Reucroft S
- Rijssenbeek M
- Rockwell T
- Roco M
- Rubinov P
- Ruchti R
- Rutherfoord J
- Sanchez-Hernandez A
- Santoro A
- Sawyer L
- Schamberger RD
- Schellman H
- Sculli J
- Shabalina E
- Shaffer C
- Shanker HC
- Shivpuri RK
- Shupe M
- Singh H
- Singh JB
- Sirotenko V
- Smart W
- Smith E
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Sosebee M
- Sotnikova N
- Souza M
- Spadafora AL
- Steinbruck G
- Stephens RW
- Stevenson ML
- Stewart D
- Stichelbaut F
- Stoker D
- Stolin V
- Stoyanova DA
- Strauss M
- Streets K
- Strovink M
- Sznajder A
- Tamburello P
- Tarazi J
- Tartaglia M
- Thomas TLT
- Thompson J
- Trippe TG
- Tuts PM
- Varelas N
- Varnes EW
- Vititoe D
- Volkov AA
- Vorobiev AP
- Wahl HD
- Wang G
- Warchol J
- Watts G
- Wayne M
- Weerts H
- White A
- White JT
- Wightman JA
- Willis S
- Wimpenny SJ
- Wirjawan JVD
- Womersley J
- Won E
- Wood DR
- Xu H
- Yamada R
- Yamin P
- Yang J
- Yasuda T
- Yepes P
- Yoshikawa C
- Youssef S
- Yu J
- Yu Y
- Zhou Z
- Zhu ZH
- Zieminska D
- Zieminski A
- Zverev EG
- Zylberstejn A
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/1998
- Field of study
We have searched for central production of a pair of photons with high
transverse energies in ppΛβ collisions at sβ=1.8 TeV using 70pbβ1 of data collected with the D\O detector at the Fermilab Tevatron in
1994--1996. If they exist, virtual heavy pointlike Dirac monopoles could
rescatter pairs of nearly real photons into this final state via a box diagram.
We observe no excess of events above background, and set lower 95% C.L. limits
of 610,870,or1580GeV/c2 on the mass of a spin 0, 1/2, or 1 Dirac
monopole.Comment: 12 pages, 4 figure
Search for New Physics in e mu X Data at D0 Using Sleuth: A Quasi-Model-Independent Search Strategy for New Physics
- Author
- Abbott B
- Abolins M
- Abramov V
- Acharya BS
- Adams DL
- Adams M
- Alves GA
- Amos N
- Anderson EW
- Baarmand MM
- Babintsev VV
- Babukhadia L
- Baden A
- Baldin B
- Banerjee S
- Bantly J
- Barberis E
- Baringer P
- Bartlett JF
- Bassler U
- Bean A
- Begel M
- Belyaev A
- Beri SB
- Bernardi G
- Bertram I
- Besson A
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Blazey G
- Blessing S
- Boehnlein A
- Bojko NI
- Borcherding F
- Brandt A
- Breedon R
- Briskin G
- Brock R
- Brooijmans G
- Bross A
- Buchholz D
- Buehler M
- Buescher V
- Burtovoi VS
- Butler JM
- Canelli F
- Carvalho W
- Casey D
- Casilum Z
- Castilla-Valdez H
- Chakraborty D
- Chan KM
- Chekulaev SV
- Cho DK
- Choi S
- Chopra S
- Choudhary BC
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Cochran J
- Collaboration DO
- Coney L
- Connolly B
- Cooper WE
- Coppage D
- Cummings MAC
- Cutts D
- da Motta H
- Dahl OI
- Davis GA
- Davis K
- De K
- Del Signore K
- Demarteau M
- Demina R
- Demine P
- Denisov D
- Denisov SP
- Di Loreto G
- Diehl HT
- Diesburg M
- Doulas S
- Draper P
- Ducros Y
- Dudko LV
- Dugad SR
- Dyshkant A
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Estrada J
- Evans H
- Evdokimov VN
- Fahland T
- Feher S
- Fein D
- Ferbel T
- Filthaut F
- Fisk HE
- Fisyak Y
- Flattum E
- Fleuret F
- Fortner M
- Frame KC
- Fuess S
- Gallas E
- Galyaev AN
- Gartung P
- Gavrilov V
- Genik RJ
- Genser K
- Gerber CE
- Gershtein Y
- Gibbard B
- Gilmartin R
- Ginther G
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Grannis PD
- Green JA
- Greenlee H
- Grinstein S
- Grudberg P
- Grunendahl S
- Gupta A
- Gurzhiev SN
- Gutierrez G
- Gutierrez P
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hahn KS
- Hall RE
- Hanlet P
- Hansen S
- Hauptman JM
- Hays C
- Hebert C
- Hedin D
- Heinson AP
- Heintz U
- Heuring T
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Hoftun JS
- Ito AS
- Jerger SA
- Jesik R
- Johns K
- Johnson M
- Jonckheere A
- Jones M
- Jostlein H
- Juste A
- Kahn S
- Kajfasz E
- Karmanov D
- Karmgard D
- Kehoe R
- Kim SK
- Klima B
- Klopfenstein C
- Knuteson B
- Ko W
- Kohli JM
- Kostritskiy AV
- Kotcher J
- Kotwal AV
- Kozelov AV
- Kozlovsky EA
- Krane J
- Krishnaswamy MR
- Krzywdzinski S
- Kubantsev M
- Kuleshov S
- Kulik Y
- Kunori S
- Kuznetsov V
- Landsberg G
- Leflat A
- Lehner F
- Li J
- Li QZ
- Lima JGR
- Lincoln D
- Linn SL
- Linnemann J
- Lipton R
- Lucotte A
- Lueking L
- Lundstedt C
- Maciel AKA
- Madaras RJ
- Manankov V
- Mani S
- Mao HS
- Marshall T
- Martin MI
- Martin RD
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McDonald J
- McMahon T
- Melanson HL
- Meng XC
- Merkin M
- Merritt KW
- Miao C
- Miettinen H
- Mihalcea D
- Mincer A
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Mostafa M
- Nagy E
- Nang F
- Narain M
- Narasimham VS
- Neal HA
- Negret JP
- Negroni S
- Norman D
- Oesch L
- Oguri V
- Olivier B
- Oshima N
- Padley P
- Pan LJ
- Para A
- Parashar N
- Partridge R
- Parua N
- Paterno M
- Patwa A
- Pawlik B
- Perkins J
- Peters M
- Piegaia R
- Piekarz H
- Pope BG
- Popkov E
- Prosper HB
- Protopopescu S
- Qian J
- Quintas PZ
- Raja R
- Rajagopalan S
- Ramberg E
- Reay NW
- Reucroft S
- Rha J
- Rijssenbeek M
- Rockwell T
- Roco M
- Rubinov P
- Ruchti R
- Rutherfoord J
- Santoro A
- Sawyer L
- Schamberger RD
- Schellman H
- Schwartzman A
- Sculli J
- Sen N
- Shabalina E
- Shankar HC
- Shivpuri RK
- Shpakov D
- Shupe M
- Sidwell RA
- Simak V
- Singh H
- Singh JB
- Sirotenko V
- Slattery P
- Smith E
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Sorin V
- Sosebee M
- Sotnikova N
- Soustruznik K
- Souza M
- Stanton NR
- Steinbruck G
- Stephens RW
- Stevenson ML
- Stichelbaut F
- Stoker D
- Stolin V
- Stoyanova DA
- Strauss M
- Streets K
- Strovink M
- Stutte L
- Sznajder A
- Taylor W
- Tentindo-Repond S
- Thompson J
- Toback D
- Trippe TG
- Turcot AS
- Tuts PM
- van Gemmeren P
- Van Kooten R
- Vaniev V
- Varelas N
- Volkov AA
- Vorobiev AP
- Wahl HD
- Wang H
- Wang ZM
- Warchol J
- Watts G
- Wayne M
- Weerts H
- White A
- White JT
- Whiteson D
- Wightman JA
- Willis S
- Wimpenny SJ
- Wirjawan JVD
- Womersley J
- Wood DR
- Yamada R
- Yamin P
- Yasuda T
- Yip K
- Youssef S
- Yu J
- Yu Z
- Zanabria M
- Zheng H
- Zhou Z
- Zhu ZH
- Zielinski M
- Zieminska D
- Zieminski A
- Zutshi V
- Zverev EG
- Zylberstejn A
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2000
- Field of study
We present a quasi-model-independent search for the physics responsible for
electroweak symmetry breaking. We define final states to be studied, and
construct a rule that identifies a set of relevant variables for any particular
final state. A new algorithm ("Sleuth") searches for regions of excess in those
variables and quantifies the significance of any detected excess. After
demonstrating the sensitivity of the method, we apply it to the semi-inclusive
channel e mu X collected in 108 pb^-1 of ppbar collisions at sqrt(s) = 1.8 TeV
at the D0 experiment during 1992-1996 at the Fermilab Tevatron. We find no
evidence of new high p_T physics in this sample.Comment: 23 pages, 12 figures. Submitted to Physical Review
The Dijet Mass Spectrum and a Search for Quark Compositeness in bar{p}p Collisions at sqrt{s} = 1.8 TeV
- Author
- Abbott B
- Abolins M
- Abramov V
- Acharya BS
- Adam I
- Adams DL
- Adams M
- Ahn S
- Aihara H
- Alves GA
- Amos N
- Anderson EW
- Astur R
- Baarmand MM
- Babintsev VV
- Babukhadia L
- Baden A
- Balamurali V
- Baldin B
- Banerjee S
- Bantly J
- Barberis E
- Baringer P
- Bartlett JF
- Belyaev A
- Beri SB
- Bertram I
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Biswas N
- Blazey G
- Blessing S
- Bloom P
- Boehnlein A
- Bojko NI
- Borcherding F
- Boswell C
- Brandt A
- Breedon R
- Brock R
- Bross A
- Buchholz D
- Burtovoi VS
- Butler JM
- Carvalho W
- Casey D
- Casilum Z
- Castilla-Valdez H
- Chakraborty D
- Chang SM
- Chekulaev SV
- Chen LP
- Chen W
- Choi S
- Chopra S
- Choudhary BC
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Cobau WG
- Cochran J
- Collaboration D
- Coney L
- Cooper WE
- Cretsinger C
- Cullen-Vidal D
- Cummings MAC
- Cutts D
- da Motta H
- Dahl OI
- Davis K
- De K
- Del Signore K
- Demarteau M
- Denisov D
- Denisov SP
- Di Loreto G
- Diehl HT
- Diesburg M
- Draper P
- Ducros Y
- Dudko LV
- Dugad SR
- Dyshkant A
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Evdokimov VN
- Fahland T
- Fatyga MK
- Feher S
- Fein D
- Ferbel T
- Finocchiaro G
- Fisk HE
- Fisyak Y
- Flattum E
- Forden GE
- Fortner M
- Frame KC
- Fuess S
- Gallas E
- Galyaev AN
- Gartung P
- Gavrilov V
- Geld TL
- Genik RJ
- Genser K
- Gerber CE
- Gershtein Y
- Gibbard B
- Gleenlee H
- Gobbi B
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Grannis PD
- Green DR
- Grinstein S
- Grudberg P
- Grunendahl S
- Guglielmo G
- Guida JA
- Guida JM
- Gupta A
- Gurzhiev SN
- Gutierrez G
- Gutierrez P
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hahn KS
- Hall RE
- Hanlet P
- Hansen S
- Hauptman JM
- Hedin D
- Heinson AP
- Heintz U
- Hernandez-Montoya R
- Heuring T
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Hoftun JS
- Hsieh F
- Hu T
- Hu T
- Huehn T
- Ito AS
- James E
- Jaques J
- Jerger SA
- Jesik R
- Joffe-Minor T
- Johns K
- Johnson M
- Jonckheere A
- Jones M
- Jostlein H
- Jun SY
- Jung CK
- Kahn S
- Kalbfleisch G
- Karmanov D
- Karmgard D
- Kehoe R
- Kelly ML
- Kim SK
- Klima B
- Klopfenstein C
- Ko W
- Kohli JM
- Koltick D
- Kostritskiy AV
- Kotcher J
- Kotwal AV
- Kozelov AV
- Kozlovsky EA
- Krane J
- Krishnaswamy MR
- Krzywdzinski S
- Kuleshov S
- Kunori S
- Landry F
- Landsberg G
- Lauer B
- Leflat A
- Li J
- Li-Demarteau QZ
- Lima JGR
- Lincoln D
- Linn SL
- Linnemann J
- Lipton R
- Lobkowicz F
- Loken SC
- Lucotte A
- Lueking L
- Lyon AL
- Maciel AKA
- Madaras RJ
- Madden R
- Magana-Mendoza L
- Manankov V
- Mani S
- Mao HS
- Markeloff R
- Marshall T
- Martin MI
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McDonald J
- McKibben T
- McKinley J
- McMahon T
- Melanson HL
- Merkin M
- Merritt KW
- Miao C
- Miettinen H
- Mincer A
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Mooney P
- Mostafa M
- Murphy C
- Nang F
- Narain M
- Narasimham VS
- Narayanan A
- Neal HA
- Negret JP
- Nemethy P
- Norman D
- Oesch L
- Oguri V
- Oliveira E
- Oltman E
- Oshima N
- Owen D
- Padley P
- Para A
- Park YM
- Partridge R
- Parua N
- Paterno M
- Pawlik B
- Perkins J
- Peters M
- Piegaia R
- Piekarz H
- Pischalnikov Y
- Pope BG
- Prosper HB
- Protopopescu S
- Qian J
- Quintas PZ
- Raja R
- Rajagopalan S
- Ramirez O
- Reucroft S
- Rijssenbeek M
- Rockwell T
- Roco M
- Rubinov P
- Ruchti R
- Rutherfoord J
- Sanchez-Hernandez A
- Santoro A
- Sawyer L
- Schamberger RD
- Schellman H
- Sculli J
- Shabalina E
- Shaffer C
- Shankar HC
- Shivpuri RK
- Shupe M
- Singh H
- Singh JB
- Sirotenko V
- Smith E
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Sosebee M
- Sotnikova N
- Souza M
- Spadafora AL
- Steinbruck G
- Stephens RW
- Stevenson ML
- Stewart D
- Stichelbaut F
- Stoker D
- Stolin V
- Stoyanova DA
- Strauss M
- Streets K
- Strovink M
- Sznajder A
- Tamburello P
- Tarazi J
- Tartaglia M
- Thomas TLT
- Thompson J
- Trippe TG
- Tuts PM
- Vaniev V
- Varelas N
- Varnes EW
- Vititoe D
- Volkov AA
- Vorobiev AP
- Wahl HD
- Wang G
- Warchol J
- Watts G
- Wayne M
- Weerts H
- White A
- White JT
- Wightman JA
- Willis S
- Wimpenny S
- Wirjawan JVD
- Womersley J
- Won E
- Wood DR
- Wu Z
- Xu H
- Yamada R
- Yamin P
- Yasuda T
- Yepes P
- Yip K
- Yoshikawa C
- Youssef S
- Yu J
- Yu Y
- Zhang B
- Zhou Y
- Zhou Z
- Zhu ZH
- Zielinski M
- Zieminska D
- Zieminski A
- Zverev EG
- Zylberstejn A
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 20/07/1998
- Field of study
Using the DZero detector at the 1.8 TeV pbarp Fermilab Tevatron collider, we
have measured the inclusive dijet mass spectrum in the central pseudorapidity
region |eta_jet| < 1.0 for dijet masses greater than 200 Gev/c^2. We have also
measured the ratio of spectra sigma(|eta_jet| < 0.5)/sigma(0.5 < |eta_jet| <
1.0). The order alpha_s^3 QCD predictions are in good agreement with the data
and we rule out models of quark compositeness with a contact interaction scale
< 2.4 TeV at the 95% confidence level.Comment: 11 pages, 4 figures, 2 tables, submitted to Phys. Rev. Let
Search for High Mass Photon Pairs in p-pbar --> gamma-gamma-jet-jet Events at sqrt(s)=1.8 TeV
- Author
- Abbott B
- Abolins M
- Abramov V
- Acharya BS
- Adam I
- Adams DL
- Adams M
- Ahn S
- Alves GA
- Amos N
- Anderson EW
- Baarmand MM
- Babintsev VV
- Babukhadia L
- Baden A
- Baldin B
- Banerjee S
- Bantly J
- Barberis E
- Baringer P
- Bartlett JF
- Belyaev A
- Beri SB
- Bertram I
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Biswas N
- Blazey G
- Blessing S
- Bloom P
- Boehnlein A
- Bojko NI
- Borcherding F
- Boswell C
- Brandt A
- Breedon R
- Briskin G
- Brock R
- Bross A
- Buchholz D
- Burtovoi VS
- Butler JM
- Carvalho W
- Casey D
- Casilum Z
- Castilla-Valdez H
- Chakraborty D
- Chekulaev SV
- Chen W
- Choi S
- Chopra S
- Choudhary BC
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Cobau WG
- Cochran J
- Collaboration D
- Coney L
- Cooper WE
- Coppage D
- Cretsinger C
- Cullen-Vidal D
- Cummings MAC
- Cutts D
- da Motta H
- Dahl OI
- Davis K
- De K
- Del Signore K
- Demarteau M
- Denisov D
- Denisov SP
- Di Loreto G
- Diehl HT
- Diesburg M
- Draper P
- Ducros Y
- Dudko LV
- Dugad SR
- Dyshkant A
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Evdokimov VN
- Fahland T
- Fatyga MK
- Feher S
- Fein D
- Ferbel T
- Fisk HE
- Fisyak Y
- Flattum E
- Forden GE
- Fortner M
- Frame KC
- Fuess S
- Gallas E
- Galyaev AN
- Gartung P
- Gavrilov V
- Geld TL
- Genik RJ
- Genser K
- Gerber CE
- Gershtein Y
- Gibbard B
- Gobbi B
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Grannis PD
- Green DR
- Greenlee H
- Grinstein S
- Grudberg P
- Grunendahl S
- Guglielmo G
- Guida JA
- Guida JM
- Gupta A
- Gurzhiev SN
- Gutierrez G
- Gutierrez P
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hahn KS
- Hall RE
- Hanlet P
- Hansen S
- Hauptman JM
- Hebert C
- Hedin D
- Heinson AP
- Heintz U
- Hernandez-Montoya R
- Heuring T
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Hoftun JS
- Hsieh F
- Hu T
- Ito AS
- Jaques J
- Jerger SA
- Jesik R
- Joffe-Minor T
- Johns K
- Johnson M
- Jonckheere A
- Jones M
- Jostlein H
- Jun SY
- Jung CK
- Kahn S
- Kalbfleisch G
- Karmanov D
- Karmgard D
- Kehoe R
- Kim SK
- Klima B
- Klopfenstein C
- Ko W
- Kohli JM
- Koltick D
- Kostritskiy AV
- Kotcher J
- Kotwal AV
- Kozelov AV
- Kozlovsky EA
- Krane J
- Krishnaswamy MR
- Krzywdzinski S
- Kuleshov S
- Kulik Y
- Kunori S
- Landry F
- Landsberg G
- Lauer B
- Leflat A
- Li J
- Li QZ
- Lima JGR
- Lincoln D
- Linn SL
- Linnemann J
- Lipton R
- Lobkowicz F
- Lucotte A
- Lueking L
- Lyon AL
- Maciel AKA
- Madaras RJ
- Madden R
- Magana-Mendoza L
- Manankov V
- Mani S
- Mao HS
- Markeloff R
- Marshall T
- Martin MI
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McDonald J
- McKibben T
- McKinley J
- McMahon T
- Melanson HL
- Merkin M
- Merritt KW
- Miao C
- Miettinen H
- Mincer A
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Mooney P
- Mostafa M
- Murphy C
- Nang F
- Narain M
- Narasimham VS
- Narayanan A
- Neal HA
- Negret JP
- Nemethy P
- Norman D
- Oesch L
- Oguri V
- Oshima N
- Owen D
- Padley P
- Para A
- Parashar N
- Park YM
- Partridge R
- Parua N
- Paterno M
- Pawlik B
- Perkins J
- Peters M
- Piegaia R
- Piekarz H
- Pischalnikov Y
- Pope BG
- Prosper HB
- Protopopescu S
- Qian J
- Quintas PZ
- Raja R
- Rajagopalan S
- Ramirez O
- Reucroft S
- Rijssenbeek M
- Rockwell T
- Roco M
- Rubinov P
- Ruchti R
- Rutherfoord J
- Sanchez-Hernandez A
- Santoro A
- Sawyer L
- Schamberger RD
- Schellman H
- Sculli J
- Shabalina E
- Shaffer C
- Shankar HC
- Shivpuri RK
- Shpakov D
- Shupe M
- Singh H
- Singh JB
- Sirotenko V
- Smith E
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Sosebee M
- Sotnikova N
- Souza M
- Steinbruck G
- Stephens RW
- Stevenson ML
- Stichelbaut F
- Stoker D
- Stolin V
- Stoyanova DA
- Strauss M
- Streets K
- Strovink M
- Sznajder A
- Tamburello P
- Tarazi J
- Tartaglia M
- Thomas TLT
- Thompson J
- Trippe TG
- Tuts PM
- Vaniev V
- Varelas N
- Varnes EW
- Volkov AA
- Vorobiev AA
- Wahl HD
- Wang G
- Warchol J
- Watts G
- Wayne M
- Weerts H
- Weerts H
- White A
- White JT
- Wightman JA
- Willis S
- Wimpenny S
- Wirjawan JVD
- Womersley J
- Won E
- Wood DR
- Wu Z
- Yamada R
- Yamin P
- Yasuda T
- Yepes P
- Yip K
- Yoshikawa C
- Youssef S
- Yu J
- Yu Y
- Zhang B
- Zhou Z
- Zhu ZH
- Zielinski M
- Zieminska D
- Zieminski A
- Zverev EG
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/1999
- Field of study
A search has been carried out for events in the channel p-barp --> gamma
gamma jet jet. Such a signature can characterize the production of a
non-standard Higgs boson together with a W or Z boson. We refer to this
non-standard Higgs, having standard model couplings to vector bosons but no
coupling to fermions, as a "bosonic Higgs." With the requirement of two high
transverse energy photons and two jets, the diphoton mass (m(gamma gamma))
distribution is consistent with expected background. A 90(95)% C.L. upper limit
on the cross section as a function of mass is calculated, ranging from
0.60(0.80) pb for m(gamma gamma) = 65 GeV/c^2 to 0.26(0.34) pb for m(gamma
gamma) = 150 GeV/c^2, corresponding to a 95% C.L. lower limit on the mass of a
bosonic Higgs of 78.5 GeV/c^2.Comment: 9 pages, 3 figures. Replacement has new H->gamma gamma branching
ratios and corresponding new mass limit
Ratio of the Isolated Photon Cross Sections at \sqrt{s} = 630 and 1800 GeV
- Author
- Abazov VM
- Abbott B
- Abdesselam A
- Abolins M
- Abramov V
- Acharya BS
- Adams DL
- Adams M
- Ahmed SN
- Alexeev GD
- Alton A
- Alves GA
- Amos N
- Anderson EW
- Arnoud Y
- Avila C
- Baarmand MM
- Babintsev VV
- Babukhadia L
- Bacon TC
- Baden A
- Baldin B
- Balm PW
- Banerjee S
- Barberis E
- Baringer P
- Barreto J
- Bartlett JF
- Bassler U
- Bauer D
- Bean A
- Beaudette F
- Begel M
- Belyaev A
- Beri SB
- Bernardi G
- Bertram I
- Besson A
- Beuselinck R
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Blazey G
- Blekman F
- Blessing S
- Boehnlein A
- Bojko NI
- Borcherding F
- Bos K
- Bose T
- Brandt A
- Breedon R
- Briskin G
- Brock R
- Brooijmans G
- Bross A
- Buchholz D
- Buehler M
- Buescher V
- Burtovoi VS
- Butler JM
- Canelli F
- Carvalho W
- Casey D
- Casilum Z
- Castilla-Valdez H
- Chakraborty D
- Chan KM
- Chekulaev SV
- Cho DK
- Choi S
- Chopra S
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Cochran J
- Collaboration D
- Coney L
- Connolly B
- Cooper WE
- Coppage D
- Crepe-Renaudin S
- Cummings MAC
- Cutts D
- da Motta H
- Davis GA
- Davis K
- de Jong SJ
- De K
- Del Signore K
- Demarteau M
- Demina R
- Demine P
- Denisov D
- Denisov SP
- Desai S
- Diehl HT
- Diesburg M
- Doulas S
- Ducros Y
- Dudko LV
- Duensing S
- Duflot L
- Dugad SR
- Duperrin A
- Dyshkant A
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Estrada J
- Evans H
- Evdokimov VN
- Fahland T
- Feher S
- Fein D
- Ferbel T
- Filthaut F
- Fisk HE
- Fisyak Y
- Flattum E
- Fleuret F
- Fortner M
- Fox H
- Frame KC
- Fu S
- Fuess S
- Gallas E
- Galyaev AN
- Gao M
- Gavrilov V
- Genik RJ
- Genser K
- Gerber CE
- Gershtein Y
- Gilmartin R
- Ginther G
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Graham G
- Grannis PD
- Green JA
- Greenlee H
- Greenwood ZD
- Grinstein S
- Groer L
- Grunendahl S
- Gupta A
- Gurzhiev SN
- Gutierrez G
- Gutierrez P
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hall RE
- Hanlet P
- Hansen S
- Hauptman JM
- Hays C
- Hebert C
- Hedin D
- Heinmiller JM
- Heinson AP
- Heintz U
- Heuring T
- Hildreth MD
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Huang Y
- Illingworth R
- Ito AS
- Jaffre M
- Jain S
- Jesik R
- Johns K
- Johnson M
- Jonckheere A
- Jostlein H
- Juste A
- Kahl W
- Kahn S
- Kajfasz E
- Kalinin AM
- Karmanov D
- Karmgard D
- Kehoe R
- Khanov A
- Kharchilava A
- Kim SK
- Klima B
- Knuteson B
- Ko W
- Kohli JM
- Kostritskiy AV
- Kotcher J
- Kothari B
- Kotwal AV
- Kozelov AV
- Kozlovsky EA
- Krane J
- Krishnaswamy MR
- Krivkova P
- Krzywdzinski S
- Kubantsev M
- Kuleshov S
- Kulik Y
- Kunori S
- Kupco A
- Kuznetsov VE
- Landsberg G
- Lee SM
- Leflat A
- Leggett C
- Lehner F
- Li J
- Li QZ
- Li X
- Lima JGR
- Lincoln D
- Linn SL
- Linnemann J
- Lipton R
- Lucotte A
- Lueking L
- Lundstedt C
- Luo C
- Maciel AKA
- Madaras RJ
- Malyshev VL
- Manankov V
- Mao HS
- Marshall T
- Martin MI
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McMahon T
- Melanson HL
- Merkin M
- Merritt KW
- Miao C
- Miettinen H
- Mihalcea D
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Moore RW
- Mostafa M
- Nagy E
- Nang F
- Narain M
- Narasimham VS
- Naumann NA
- Neal HA
- Negret JR
- Negroni S
- Nunnemann T
- O'Neil D
- Oguri V
- Olivier B
- Oshima N
- Padley P
- Pan LJ
- Papageorgiou K
- Para A
- Parashar N
- Partridge R
- Parua N
- Paterno M
- Patwa A
- Pawlik B
- Perkins J
- Peters O
- Petroff P
- Piegaia R
- Pope BG
- Popkov E
- Prosper HB
- Protopopescu S
- Przybycien MB
- Qian J
- Raja R
- Rajagopalan S
- Ramberg E
- Rapidis PA
- Reay NW
- Reucroft S
- Ridel M
- Rijssenbeek M
- Rizatdinova F
- Rockwell T
- Roco M
- Royon C
- Rubinov R
- Ruchti R
- Rutherfoord J
- Sabirov BM
- Sajot G
- Santoro A
- Sawyer L
- Schamberger RD
- Schellman H
- Schwartzman A
- Sen N
- Shabalina E
- Shivpuri RK
- Shpakov D
- Shupe M
- Sidwell RA
- Simak V
- Singh H
- Singh JB
- Sirotenko V
- Slattery P
- Smith E
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Song Y
- Sorin V
- Sosebee M
- Sotnikova N
- Soustruznik K
- Souza M
- Stanton NR
- Steinbruck G
- Stephens RW
- Stichelbaut F
- Stoker D
- Stolin V
- Stone A
- Stoyanova DA
- Strang MA
- Strauss M
- Strovink M
- Stutte L
- Sznajder A
- Talby M
- Taylor W
- Tentindo-Repond S
- Tripathi SM
- Trippe TG
- Turcot AS
- Tuts PM
- Van Kooten R
- Vaniev V
- Varelas N
- Vertogradov LS
- Villeneuve-Seguier F
- Volkov AA
- Vorobiev AP
- Wahl HD
- Wang H
- Wang ZM
- Warchol J
- Watts G
- Wayne M
- Weerts H
- White A
- White JT
- Whiteson D
- Wightman JA
- Wijngaarden DA
- Willis S
- Wimpenny SJ
- Womersley J
- Wood DR
- Xu Q
- Yamada R
- Yamin R
- Yasuda T
- Yatsunenko YA
- Yip K
- Youssef S
- Yu J
- Yu Z
- Zanabria M
- Zhang X
- Zheng H
- Zhou B
- Zhou Z
- Zielinski M
- Zieminska D
- Zieminski A
- Zutshi V
- Zverev EG
- Zylberstejn A
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2001
- Field of study
The inclusive cross section for production of isolated photons has been
measured in \pbarp collisions at sβ=630 GeV with the \D0 detector at
the Fermilab Tevatron Collider. The photons span a transverse energy (ETβ)
range from 7-49 GeV and have pseudorapidity β£Ξ·β£<2.5. This measurement is
combined with to previous \D0 result at sβ=1800 GeV to form a ratio
of the cross sections. Comparison of next-to-leading order QCD with the
measured cross section at 630 GeV and ratio of cross sections show satisfactory
agreement in most of the ETβ range.Comment: 7 pages. Published in Phys. Rev. Lett. 87, 251805, (2001
Zgamma Production in pbarp Collisions at sqrt(s)=1.8 TeV and Limits on Anomalous ZZgamma and Zgammagamma Couplings
- Author
- Abbott B
- Abolins M
- Acharya BS
- Adam I
- Adams DL
- Adams M
- Ahn S
- Aihara H
- Alves GA
- Amidi E
- Amos N
- Anderson EW
- Astur R
- Baarmand MM
- Baden A
- Balamurali V
- Balderston J
- Baldin B
- Banerjee S
- Bantly J
- Barberis E
- Bartlett JF
- Bazizi K
- Belyaev A
- Beri SB
- Bertram I
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Biswas N
- Blazey G
- Blessing S
- Bloom P
- Boehnlein A
- Bojko NI
- Borcherding F
- Boswell C
- Brandt A
- Brock R
- Bross A
- Buchholz D
- Burtovoi VS
- Butler JM
- Carvalho W
- Casey D
- Casilum Z
- Castilla-Valdez H
- Chakraborty D
- Chang SM
- Chekulaev SV
- Chen LP
- Chen W
- Choi S
- Chopra S
- Choudhary BC
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Cobau WG
- Cochran J
- Cooper WE
- Cretsinger C
- Cullen-Vidal D
- Cummings MAC
- Cutts D
- da Motta H
- Dahl OI
- Davis K
- De K
- Del Signore K
- Demarteau M
- Denisov D
- Denisov SP
- Di Loreto G
- Diehl HT
- Diesburg H
- Draper P
- Ducros Y
- Dudko LV
- Dugad SR
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Evdokimov VN
- Fahland T
- Fatyga M
- Fatyga MK
- Feher S
- Fein D
- Ferbel T
- Finocchiaro G
- Fisk HE
- Fisyak Y
- Flattum E
- Forden GE
- Fortner M
- Frame KC
- Fuess S
- Gallas E
- Galyaev AN
- Gartung P
- Geld TL
- Genik RJ
- Genser K
- Gerber CE
- Gibbard B
- Glenn S
- Gobbi B
- Goforth M
- Goldschmidt A
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Grannis PD
- Green DR
- Green J
- Greenlee H
- Grim G
- Grinstein S
- Grossman N
- Grudberg P
- Grunendahl S
- Guglielmo G
- Guida JA
- Guida JM
- Gupta A
- Gurzhiev SN
- Gutierrez P
- Gutnikov YE
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hahn KS
- Hall RE
- Hanlet P
- Hansen S
- Hauptman JM
- Hedin D
- Heinson AP
- Heintz U
- Hernandez-Montoya R
- Heuring T
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Hoftun JS
- Hsieh F
- Hu T
- Hu T
- Huehn T
- Ito AS
- James E
- Jaques J
- Jerger SA
- Jesik R
- Jiang JZY
- Joffe-Minor T
- Johns K
- Johnson M
- Jonckheere A
- Jones M
- Jostlein H
- Jun SY
- Jung CK
- Kahn S
- Kalbfleisch G
- Kang JS
- Karmgard D
- Kehoe R
- Kelly ML
- Kim CL
- Kim SK
- Klatchko A
- Klima B
- Klopfenstein C
- Klyukhin VI
- Kochetkov VI
- Kohli JM
- Koltick D
- Kostritskiy AV
- Kotcher J
- Kotwal AV
- Kourlas J
- Kozelov AV
- Kozlovski EA
- Krane J
- Krishnaswamy MR
- Krzywdzinski S
- Kunori S
- Lami S
- Lan H
- Lander R
- Landry F
- Landsberg G
- Lauer B
- Leflat A
- Li H
- Li J
- Li-Demarteau QZ
- Lima JGR
- Lincoln D
- Linn SL
- Linnemann J
- Lipton R
- Liu YC
- Lobkowicz F
- Loken SC
- Lokos S
- Lueking L
- Lyon AL
- Maciel AKA
- Madaras RJ
- Madden R
- Magana-Mendoza L
- Mani S
- Mao HS
- Markeloff R
- Marshall T
- Martin MI
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McDonald J
- McKibben T
- McKinley J
- McMahon T
- Melanson HL
- Merkin M
- Merritt KW
- Miettinen H
- Mincer A
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Mooney P
- Murphy C
- Nang F
- Narain M
- Narasimham VS
- Narayanan A
- Neal HA
- Negret JP
- Nemethy P
- Norman D
- Oesch L
- Oguri V
- Oltman E
- Oshima N
- Owen D
- Padley P
- Pang M
- Para A
- Park YM
- Partridge R
- Parua N
- Paterno M
- Pawlik B
- Perkins J
- Peters M
- Piegaia R
- Piekarz H
- Pischalnikov Y
- Podstavkov VM
- Pope BG
- Prosper HB
- Protopopescu S
- Qian J
- Quintas PZ
- Raja R
- Rajagopalan S
- Ramirez O
- Rasmussen L
- Reucroft S
- Rijssenbeek M
- Rockwell T
- Roe NA
- Rubinov P
- Ruchti R
- Rutherfoord J
- Sanchez-Hernandez A
- Santoro A
- Sawyer L
- Schaffer C
- Schamberger RD
- Schellman H
- Sculli J
- Shabalina E
- Shankar HC
- Shivpuri RK
- Shupe M
- Singh H
- Singh JB
- Sirotenko V
- Smart W
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Sood PM
- Sosebee M
- Sotnikova N
- Souza M
- Spadafora AL
- Stephens RW
- Stevenson ML
- Stewart D
- Stichelbaut F
- Stoianova DA
- Stoker D
- Strauss M
- Streets K
- Strovink M
- Sznajder A
- Tamburello P
- Tarazi J
- Tartaglia M
- Thomas TLT
- Thompson J
- Trippe TG
- Tuts PM
- Varelas N
- Varnes EW
- Vititoe D
- Volkov AA
- Vorobiev AP
- Wahl HD
- Wang G
- Warchol J
- Watts G
- Wayne M
- Weerts H
- White A
- White JT
- Wightman JA
- Willis S
- Wimpenny SJ
- Wirjawan JVD
- Womersley J
- Won E
- Wood DR
- Xu H
- Yamada R
- Yamin P
- Yang J
- Yasuda T
- Yepes P
- Yoshikawa C
- Youssef S
- Yu J
- Yu Y
- Zhu ZH
- Zieminska D
- Zieminski A
- Zverev EG
- Zylberstejn A
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/04/1988
- Field of study
We present a study of Z +gamma + X production in p-bar p collisions at
sqrt{S}=1.8 TeV from 97 (87) pb^{-1} of data collected in the eegamma
(mumugamma) decay channel with the D0 detector at Fermilab. The event yield and
kinematic characteristics are consistent with the Standard Model predictions.
We obtain limits on anomalous ZZgamma and Zgammagamma couplings for form factor
scales Lambda = 500 GeV and Lambda = 750 GeV. Combining this analysis with our
previous results yields 95% CL limits |h{Z}_{30}| < 0.36, |h{Z}_{40}| < 0.05,
|h{gamma}_{30}| < 0.37, and |h{gamma}_{40}| < 0.05 for a form factor scale
Lambda=750 GeV.Comment: 17 Pages including 2 Figures. Submitted to PR
A Measurement of the W Boson Mass
- Author
- Abbott B
- Abolins M
- Acharya BS
- Adam I
- Adams DL
- Adams M
- Ahn S
- Aihara H
- Alves GA
- Amos N
- Anderson EW
- Astur R
- Baarmand MM
- Baden A
- Balamurali V
- Balderston J
- Baldin B
- Banerjee S
- Bantly J
- Barberis E
- Bartlett JF
- Bazizi K
- Belyaev A
- Beri SB
- Bertram I
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Biswas N
- Blazey G
- Blessing S
- Bloom P
- Boehnlein A
- Bojko NI
- Borcherding F
- Boswell C
- Brandt A
- Brock R
- Bross A
- Buchholz D
- Burtovoi VS
- Butler JM
- Carvalho W
- Casey D
- Casilum Z
- Castilla-Valdez H
- Chakraborty D
- Chang SM
- Chekulaev SV
- Chen LP
- Chen W
- Choi S
- Chopra S
- Choudhary BC
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Cobau WG
- Cochran J
- Collaboration DO
- Coney L
- Cooper WE
- Cretsinger C
- Cullen-Vidal D
- Cummings MAC
- Cutts D
- da Motta H
- Dahl OI
- Davis K
- De K
- Del Signore K
- Demarteau M
- Denisov D
- Denisov SP
- Di Loreto G
- Diehl HT
- Diesburg M
- Draper P
- Ducros Y
- Dudko LV
- Dugad SR
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Evdokimov VN
- Fahland T
- Fatyga MK
- Feher S
- Fein D
- Ferbel T
- Finocchiaro G
- Fisk HE
- Fisyak Y
- Flattum E
- Forden GE
- Fortner M
- Frame KC
- Fuess S
- Gallas E
- Galyaev AN
- Gartung P
- Geld TL
- Genik RJ
- Genser K
- Gerber CE
- Gibbard B
- Glenn S
- Gobbi B
- Goldschmidt A
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Grannis PD
- Green DR
- Greenlee H
- Grim G
- Grinstein S
- Grossman N
- Grudberg P
- Grunendahl S
- Guglielmo G
- Guida JA
- Guida JM
- Gupta A
- Gurzhiev SN
- Gutierrez P
- Gutnikov YE
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hahn KS
- Hall RE
- Hanlet P
- Hansen S
- Hauptman JM
- Hedin D
- Heinson AP
- Heintz U
- Hernandez-Montoya R
- Heuring T
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Hoftun JS
- Hsieh F
- Hu T
- Hu T
- Huehn T
- Ito AS
- James E
- Jaques J
- Jerger SA
- Jesik R
- Jiang JZY
- Joffe-Minor T
- Johns K
- Johnson M
- Jonckheere A
- Jones M
- Jostlein H
- Jun SY
- Jung CK
- Kahn S
- Kalbfleisch G
- Kang JS
- Karmanov D
- Karmgard D
- Kehoe R
- Kelly ML
- Kim CL
- Kim SK
- Klatchko A
- Klima B
- Klopfenstein C
- Klyukhin VI
- Kochetkov VI
- Kohli JM
- Koltick D
- Kostritskiy AV
- Kotcher J
- Kotwal AV
- Kourlas J
- Kozelov AV
- Kozlovski EA
- Krane J
- Krishnaswamy MR
- Krzywdzinski S
- Kunori S
- Lami S
- Lander R
- Landry F
- Landsberg G
- Lauer B
- Leflat A
- Li H
- Li J
- Li-Demarteau QZ
- Lima JGR
- Lincoln D
- Linn SL
- Linnenmann J
- Lipton R
- Liu YC
- Lobkowicz F
- Loken SC
- Lokos S
- Lueking L
- Lyon AL
- Maciel AKA
- Madaras RJ
- Madden R
- Magana-Mendoza L
- Manankov V
- Mani S
- Mao HS
- Markeloff R
- Marshall T
- Martin MI
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McDonald J
- McKibben T
- McKinley J
- McMahon T
- Melanson HL
- Merkin M
- Merritt KW
- Miettinen H
- Mincer A
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Mooney P
- Murphy C
- Nang F
- Narain M
- Narasimham VS
- Narayanan A
- Neal HA
- Negret JP
- Nemethy P
- Norman D
- Oesch L
- Oguri V
- Oliveira E
- Oltman E
- Oshima N
- Owen D
- Padley P
- Para A
- Park YM
- Partridge R
- Parua N
- Paterno M
- Pawlik B
- Perkins J
- Peters M
- Piegaia R
- Piekarz H
- Pischalnikov Y
- Podstavkov VM
- Pope BG
- Prosper HB
- Protopopescu S
- Qian J
- Quintas PZ
- Raja R
- Rajagopalan S
- Ramirez O
- Rasmussen L
- Reucroft S
- Rijssenbeek M
- Rockwell T
- Roco M
- Roe NA
- Rubinov P
- Ruchti R
- Rutherfoord J
- Sanchez-Hernandez A
- Santoro A
- Sawyer L
- Schamberger RD
- Schellman H
- Sculli J
- Shabalina E
- Shaffer C
- Shankar HC
- Shivpuri RK
- Shupe M
- Singh H
- Singh JB
- Sirotenko V
- Smart W
- Smith E
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Sood PM
- Sosebee M
- Sotnikova N
- Souza M
- Spadafora AL
- Steinbruck G
- Stephens RW
- Stevenson ML
- Stewart D
- Stichelbaut F
- Stoianova DA
- Stoker D
- Strauss M
- Streets K
- Strovink M
- Sznajder A
- Tamburello P
- Tarazi J
- Tartaglia M
- Thomas TLT
- Thompson J
- Trippe TG
- Tuts PM
- Varelas N
- Varnes EW
- Vititoe D
- Volkov AA
- Vorobiev AP
- Wahl HD
- Wang G
- Warchol J
- Watts G
- Wayne M
- Weerts H
- White A
- White JT
- Wightman JA
- Willis S
- Wimpenny SJ
- Wirjawan JVD
- Womersley J
- Won E
- Wood DR
- Xu H
- Yamanda R
- Yamin P
- Yang J
- Yasuda T
- Yepes P
- Yoshikawa C
- Youssef S
- Yu J
- Yu Y
- Zhu ZH
- Zieminska D
- Zieminski A
- Zverev EG
- Zylberstejn A
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 22/12/1997
- Field of study
We report a measurement of the W boson mass based on an integrated luminosity
of 82 pbβ1 from \ppbar collisions at sβ=1.8 TeV recorded in
1994--1995 by the \Dzero detector at the Fermilab Tevatron. We identify W
bosons by their decays to eΞ½ and extract the mass by fitting the transverse
mass spectrum from 28,323 W boson candidates. A sample of 3,563 dielectron
events, mostly due to Z to ee decays, constrains models of W boson production
and the detector. We measure \mw=80.44\pm0.10(stat)\pm0.07(syst)~GeV. By
combining this measurement with our result from the 1992--1993 data set, we
obtain \mw=80.43\pm0.11 GeV.Comment: 11 pages, 5 figure
Probing Hard Color-Singlet Exchange in ppbar Collisions at root-s=630 GeV and 1800 GeV
- Author
- Abbott B
- Abolins M
- Abramov V
- Acharya BS
- Adam I
- Adams DL
- Adams M
- Ahn S
- Aihara H
- Alves GA
- Amos N
- Anderson EW
- Astur R
- Baarmand MM
- Babintsev VV
- Babukhadia L
- Babukhadia L
- Baden A
- Baden A
- Baldin B
- Baldin B
- Banerjee S
- Banerjee S
- Bantly J
- Bantly J
- Barberis E
- Barberis E
- Baringer P
- Bartlett JF
- Belyaev A
- Beri SB
- Bertram I
- Bezzubov VA
- Bhat PC
- Bhatnagar V
- Bhattacharjee M
- Biswas N
- Blazey G
- Blessing S
- Bloom P
- Boehnlein A
- Bojko NI
- Borcherding F
- Boswell C
- Brandt A
- Breedon R
- Brock R
- Bross A
- Buchholz D
- Burtovoi VS
- Butler JM
- Carvalho W
- Casey D
- Casilum Z
- Castilla-Valdez H
- Chakraborty D
- Chang SM
- Chekulaev SV
- Chen W
- Choi S
- Chopra S
- Choudhary BC
- Christenson JH
- Chung M
- Claes D
- Clark AR
- Cobau WG
- Cochran J
- Collaboration DO
- Coney L
- Cooper WE
- Cretsinger C
- Cullen-Vidal D
- Cummings MAC
- Cutts D
- da Motta H
- Dahl OI
- Davis K
- De K
- Del Signore K
- Demarteau M
- Denisov D
- Denisov SP
- Di Loreto G
- Diehl HT
- Diesburg M
- Draper P
- Ducros Y
- Dudko LV
- Dugad SR
- Dyshkant A
- Edmunds D
- Ellison J
- Elvira VD
- Engelmann R
- Eno S
- Eppley G
- Ermolov P
- Eroshin OV
- Evdokimov VN
- Fahland T
- Fatyga MK
- Feher S
- Fein D
- Ferbel T
- Finocchiaro G
- Fisk HE
- Fisyak Y
- Flattum E
- Forden GE
- Fortner M
- Frame KC
- Fuess S
- Gallas E
- Galyaev AN
- Gartung P
- Gavrilov V
- Geld TL
- Genik RJ
- Genser K
- Gerber CE
- Gershtein Y
- Gibbard B
- Gobbi B
- Gomez B
- Gomez G
- Goncharov PI
- Gordon H
- Goss LT
- Gounder K
- Goussiou A
- Graf N
- Grannis PD
- Green DR
- Greenlee H
- Grinstein S
- Grudberg P
- Grunendahl S
- Guglielmo G
- Guida JA
- Guida JM
- Gupta A
- Gurzhiev SN
- Gutierrez G
- Gutierrez P
- Hadley NJ
- Haggerty H
- Hagopian S
- Hagopian V
- Hahn KS
- Hall RE
- Hanlet P
- Hansen S
- Hauptman JM
- Hedin D
- Heinson AP
- Heintz U
- Hernandez-Montoya R
- Heuring T
- Hirosky R
- Hobbs JD
- Hoeneisen B
- Hoftun JS
- Hsieh F
- Hu T
- Hu T
- Ito AS
- James E
- Jaques J
- Jerger SA
- Jesik R
- Joffe-Minor T
- Johns K
- Johnson M
- Jonckheere A
- Jones M
- Jostlein H
- Jun SY
- Jung CK
- Kahn S
- Kalbfleisch G
- Karmanov D
- Karmgard D
- Kehoe R
- Kelly ML
- Kim SK
- Klima B
- Klopfenstein C
- Ko W
- Kohli JM
- Koltick D
- Kostritskiy AV
- Kotcher J
- Kotwal AV
- Kozelov AV
- Kozlovsky EA
- Krane J
- Krishnaswamy MR
- Krzywdzinski S
- Kuleshov S
- Kulik Y
- Kunori S
- Landry F
- Landsberg G
- Lauer B
- Leflat A
- Li J
- Li-Demarteau QZ
- Lima JGR
- Lincoln D
- Linn SL
- Linnemann J
- Lipton R
- Lobkowicz F
- Loken SC
- Lucotte A
- Lueking L
- Lyon AL
- Maciel AKA
- Madaras RJ
- Madden R
- Magana-Mendoza L
- Manankov V
- Mani S
- Mao HS
- Markeloff R
- Marshall T
- Martin MI
- Mauritz KM
- May B
- Mayorov AA
- McCarthy R
- McDonald J
- McKibben T
- McKinley J
- McMahon T
- Melanson HL
- Merkin M
- Merritt KW
- Miao C
- Miettinen H
- Mincer A
- Mishra CS
- Mokhov N
- Mondal NK
- Montgomery HE
- Mooney P
- Mostafa M
- Murphy C
- Nang F
- Narain M
- Narasimham VS
- Narayanan A
- Neal HA
- Negret JP
- Nemethy P
- Norman D
- Oesch L
- Oguri V
- Oliveira E
- Oltman E
- Oshima N
- Owen D
- Padley P
- Para A
- Park YM
- Partridge R
- Parua N
- Paterno M
- Pawlik B
- Perkins J
- Peters M
- Piegaia R
- Piekarz H
- Pischalnikov Y
- Pope BG
- Prosper HB
- Protopopescu S
- Qian J
- Quintas PZ
- Raja R
- Rajagopalan S
- Ramirez O
- Reucroft S
- Rijssenbeek M
- Rockwell T
- Roco M
- Rubinov P
- Ruchti R
- Rutherfoord J
- Sanchez-Hernandez A
- Santoro A
- Sawyer L
- Schamberger RD
- Schellman H
- Sculli J
- Shabalina E
- Shaffer C
- Shankar HC
- Shivpuri RK
- Shpakov D
- Shupe M
- Singh H
- Singh JB
- Sirotenko V
- Smith E
- Smith RP
- Snihur R
- Snow GR
- Snow J
- Snyder S
- Solis JLG
- Solomon J
- Sosebee M
- Sotnikova N
- Souza M
- Steinbruck G
- Stephens RW
- Stevenson ML
- Stewart D
- Stichelbaut F
- Stoker D
- Stolin V
- Stoyanova DA
- Strauss M
- Streets K
- Strovink M
- Sznajder A
- Tamburello P
- Tarazi J
- Tartaglia M
- Thomas TLT
- Thompson J
- Trippe TG
- Tuts PM
- Vaniev V
- Varelas N
- Varnes EW
- Vititoe D
- Volkov AA
- Vorobiev AP
- Wahl HD
- Wang G
- Warchol J
- Watts G
- Wayne M
- Weerts H
- White A
- White JT
- Wightman JA
- Willis S
- Wimpenny SJ
- Wirjawan JVD
- Womersley J
- Won E
- Wood DR
- Wu Z
- Yamada R
- Yamin P
- Yasuda T
- Yepes P
- Yip K
- Yoshikawa C
- Youssef S
- Yu J
- Yu Y
- Zhang B
- Zhou Y
- Zhou Z
- Zhu ZH
- Zielinski M
- Zieminska D
- Zieminski A
- Zverev EG
- Zylberstejn A
- Publication venue
- 'Elsevier BV'
- Publication date
- 01/01/1998
- Field of study
We present results on dijet production via hard color-singlet exchange in
proton-antiproton collisions at root-s = 630 GeV and 1800 GeV using the DZero
detector. The fraction of dijet events produced via color-singlet exchange is
measured as a function of jet transverse energy, separation in pseudorapidity
between the two highest transverse energy jets, and proton-antiproton
center-of-mass energy. The results are consistent with a color-singlet fraction
that increases with an increasing fraction of quark-initiated processes and
inconsistent with two-gluon models for the hard color-singlet.Comment: 16 pages, 6 figure
Jet energy measurement with the ATLAS detector in proton-proton collisions at root s=7 TeV
- Author
- Aad G
- Abbott B
- Abdallah J
- Abdelalim AA
- Abdesselam A
- Abdinov O
- Abi B
- Abolins M
- Abramowicz H
- Abreu H
- Acerbi E
- Acharya BS
- Adams DL
- Addy TN
- Adelman J
- Aderholz M
- Adomeit S
- Adragna P
- Adye T
- Aefsky S
- Aguilar-Saavedra JA
- Aharrouche M
- Ahlen SP
- Ahles F
- Ahmad A
- Ahsan M
- Aielli G
- Akdogana T
- Akesson TPA
- Akimoto G
- Akimov AV
- Akiyama A
- Aktas A
- Alam MA
- Alam MS
- Albert J
- Albrand S
- Aleksa M
- Aleksandrov IN
- Alessandria F
- Alexa C
- Alexander G
- Alexandre G
- Alexopoulos T
- Alhroob M
- Aliev M
- Alimonti G
- Alison J
- Aliyev M
- Allport PP
- Allwood-Spiers SE
- Almenar CC
- Almond J
- Aloisio A
- Alon R
- Alonso A
- Alviggi MG
- Amako K
- Amaral P
- Amelung C
- Ammosov VV
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- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/03/2013
- Field of study
The jet energy scale and its systematic uncertainty are determined for jets measured with the ATLAS detector at the LHC in proton-proton collision data at a centre-of-mass energy of βs = 7TeV corresponding to an integrated luminosity of 38 pb-1. Jets are reconstructed with the anti-kt algorithm with distance parameters R=0. 4 or R=0. 6. Jet energy and angle corrections are determined from Monte Carlo simulations to calibrate jets with transverse momenta pTβ₯20 GeV and pseudorapidities {pipe}Ξ·{pipe}<4. 5. The jet energy systematic uncertainty is estimated using the single isolated hadron response measured in situ and in test-beams, exploiting the transverse momentum balance between central and forward jets in events with dijet topologies and studying systematic variations in Monte Carlo simulations. The jet energy uncertainty is less than 2. 5 % in the central calorimeter region ({pipe}Ξ·{pipe}<0. 8) for jets with 60β€pT<800 GeV, and is maximally 14 % for pT<30 GeV in the most forward region 3. 2β€{pipe}Ξ·{pipe}<4. 5. The jet energy is validated for jet transverse momenta up to 1 TeV to the level of a few percent using several in situ techniques by comparing a well-known reference such as the recoiling photon pT, the sum of the transverse momenta of tracks associated to the jet, or a system of low-pT jets recoiling against a high-pT jet. More sophisticated jet calibration schemes are presented based on calorimeter cell energy density weighting or hadronic properties of jets, aiming for an improved jet energy resolution and a reduced flavour dependence of the jet response. The systematic uncertainty of the jet energy determined from a combination of in situ techniques is consistent with the one derived from single hadron response measurements over a wide kinematic range. The nominal corrections and uncertainties are derived for isolated jets in an inclusive sample of high-pT jets. Special cases such as event topologies with close-by jets, or selections of samples with an enhanced content of jets originating from light quarks, heavy quarks or gluons are also discussed and the corresponding uncertainties are determined. Β© 2013 CERN for the benefit of the ATLAS collaboration
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