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Ratio of the Isolated Photon Cross Sections at \sqrt{s} = 630 and 1800 GeV
- Authors
- VM Abazov
- B Abbott
- A Abdesselam
- M Abolins
- V Abramov
- BS Acharya
- DL Adams
- M Adams
- SN Ahmed
- GD Alexeev
- A Alton
- GA Alves
- N Amos
- EW Anderson
- Y Arnoud
- C Avila
- MM Baarmand
- VV Babintsev
- L Babukhadia
- TC Bacon
- A Baden
- B Baldin
- PW Balm
- S Banerjee
- E Barberis
- P Baringer
- J Barreto
- JF Bartlett
- U Bassler
- D Bauer
- A Bean
- F Beaudette
- M Begel
- A Belyaev
- SB Beri
- G Bernardi
- I Bertram
- A Besson
- R Beuselinck
- VA Bezzubov
- PC Bhat
- V Bhatnagar
- M Bhattacharjee
- G Blazey
- F Blekman
- S Blessing
- A Boehnlein
- NI Bojko
- F Borcherding
- K Bos
- T Bose
- A Brandt
- R Breedon
- G Briskin
- R Brock
- G Brooijmans
- A Bross
- D Buchholz
- M Buehler
- V Buescher
- VS Burtovoi
- JM Butler
- F Canelli
- W Carvalho
- D Casey
- Z Casilum
- H Castilla-Valdez
- D Chakraborty
- KM Chan
- SV Chekulaev
- DK Cho
- S Choi
- S Chopra
- JH Christenson
- M Chung
- D Claes
- AR Clark
- J Cochran
- D Collaboration
- L Coney
- B Connolly
- WE Cooper
- D Coppage
- S Crepe-Renaudin
- MAC Cummings
- D Cutts
- H da Motta
- GA Davis
- K Davis
- SJ de Jong
- K De
- K Del Signore
- M Demarteau
- R Demina
- P Demine
- D Denisov
- SP Denisov
- S Desai
- HT Diehl
- M Diesburg
- S Doulas
- Y Ducros
- LV Dudko
- S Duensing
- L Duflot
- SR Dugad
- A Duperrin
- A Dyshkant
- D Edmunds
- J Ellison
- VD Elvira
- R Engelmann
- S Eno
- G Eppley
- P Ermolov
- OV Eroshin
- J Estrada
- H Evans
- VN Evdokimov
- T Fahland
- S Feher
- D Fein
- T Ferbel
- F Filthaut
- HE Fisk
- Y Fisyak
- E Flattum
- F Fleuret
- M Fortner
- H Fox
- KC Frame
- S Fu
- S Fuess
- E Gallas
- AN Galyaev
- M Gao
- V Gavrilov
- RJ Genik
- K Genser
- CE Gerber
- Y Gershtein
- R Gilmartin
- G Ginther
- B Gomez
- G Gomez
- PI Goncharov
- H Gordon
- LT Goss
- K Gounder
- A Goussiou
- N Graf
- G Graham
- PD Grannis
- JA Green
- H Greenlee
- ZD Greenwood
- S Grinstein
- L Groer
- S Grunendahl
- A Gupta
- SN Gurzhiev
- G Gutierrez
- P Gutierrez
- NJ Hadley
- H Haggerty
- S Hagopian
- V Hagopian
- RE Hall
- P Hanlet
- S Hansen
- JM Hauptman
- C Hays
- C Hebert
- D Hedin
- JM Heinmiller
- AP Heinson
- U Heintz
- T Heuring
- MD Hildreth
- R Hirosky
- JD Hobbs
- B Hoeneisen
- Y Huang
- R Illingworth
- AS Ito
- M Jaffre
- S Jain
- R Jesik
- K Johns
- M Johnson
- A Jonckheere
- H Jostlein
- A Juste
- W Kahl
- S Kahn
- E Kajfasz
- AM Kalinin
- D Karmanov
- D Karmgard
- R Kehoe
- A Khanov
- A Kharchilava
- SK Kim
- B Klima
- B Knuteson
- W Ko
- JM Kohli
- AV Kostritskiy
- J Kotcher
- B Kothari
- AV Kotwal
- AV Kozelov
- EA Kozlovsky
- J Krane
- MR Krishnaswamy
- P Krivkova
- S Krzywdzinski
- M Kubantsev
- S Kuleshov
- Y Kulik
- S Kunori
- A Kupco
- VE Kuznetsov
- G Landsberg
- SM Lee
- A Leflat
- C Leggett
- F Lehner
- J Li
- QZ Li
- X Li
- JGR Lima
- D Lincoln
- SL Linn
- J Linnemann
- R Lipton
- A Lucotte
- L Lueking
- C Lundstedt
- C Luo
- AKA Maciel
- RJ Madaras
- VL Malyshev
- V Manankov
- HS Mao
- T Marshall
- MI Martin
- KM Mauritz
- B May
- AA Mayorov
- R McCarthy
- T McMahon
- HL Melanson
- M Merkin
- KW Merritt
- C Miao
- H Miettinen
- D Mihalcea
- CS Mishra
- N Mokhov
- NK Mondal
- HE Montgomery
- RW Moore
- M Mostafa
- E Nagy
- F Nang
- M Narain
- VS Narasimham
- NA Naumann
- HA Neal
- JR Negret
- S Negroni
- T Nunnemann
- D O'Neil
- V Oguri
- B Olivier
- N Oshima
- P Padley
- LJ Pan
- K Papageorgiou
- A Para
- N Parashar
- R Partridge
- N Parua
- M Paterno
- A Patwa
- B Pawlik
- J Perkins
- O Peters
- P Petroff
- R Piegaia
- BG Pope
- E Popkov
- HB Prosper
- S Protopopescu
- MB Przybycien
- J Qian
- R Raja
- S Rajagopalan
- E Ramberg
- PA Rapidis
- NW Reay
- S Reucroft
- M Ridel
- M Rijssenbeek
- F Rizatdinova
- T Rockwell
- M Roco
- C Royon
- R Rubinov
- R Ruchti
- J Rutherfoord
- BM Sabirov
- G Sajot
- A Santoro
- L Sawyer
- RD Schamberger
- H Schellman
- A Schwartzman
- N Sen
- E Shabalina
- RK Shivpuri
- D Shpakov
- M Shupe
- RA Sidwell
- V Simak
- H Singh
- JB Singh
- V Sirotenko
- P Slattery
- E Smith
- RP Smith
- R Snihur
- GR Snow
- J Snow
- S Snyder
- JLG Solis
- J Solomon
- Y Song
- V Sorin
- M Sosebee
- N Sotnikova
- K Soustruznik
- M Souza
- NR Stanton
- G Steinbruck
- RW Stephens
- F Stichelbaut
- D Stoker
- V Stolin
- A Stone
- DA Stoyanova
- MA Strang
- M Strauss
- M Strovink
- L Stutte
- A Sznajder
- M Talby
- W Taylor
- S Tentindo-Repond
- SM Tripathi
- TG Trippe
- AS Turcot
- PM Tuts
- R Van Kooten
- V Vaniev
- N Varelas
- LS Vertogradov
- F Villeneuve-Seguier
- AA Volkov
- AP Vorobiev
- HD Wahl
- H Wang
- ZM Wang
- J Warchol
- G Watts
- M Wayne
- H Weerts
- A White
- JT White
- D Whiteson
- JA Wightman
- DA Wijngaarden
- S Willis
- SJ Wimpenny
- J Womersley
- DR Wood
- Q Xu
- R Yamada
- R Yamin
- T Yasuda
- YA Yatsunenko
- K Yip
- S Youssef
- J Yu
- Z Yu
- M Zanabria
- X Zhang
- H Zheng
- B Zhou
- Z Zhou
- M Zielinski
- D Zieminska
- A Zieminski
- V Zutshi
- EG Zverev
- A Zylberstejn
- Publication date
- 1 January 2001
- Publisher
- 'American Physical Society (APS)'
- Doi
Abstract
The inclusive cross section for production of isolated photons has been measured in \pbarp collisions at s=630 GeV with the \D0 detector at the Fermilab Tevatron Collider. The photons span a transverse energy (ET) range from 7-49 GeV and have pseudorapidity ∣η∣<2.5. This measurement is combined with to previous \D0 result at s=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 ET range.Comment: 7 pages. Published in Phys. Rev. Lett. 87, 251805, (2001Similar works
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