11 research outputs found
System-size dependence of the hadronic rescattering effect at energies available at the CERN Large Hadron Collider
- Author
- Acharya S
- Adamová D
- Aglieri Rinella G
- Agnello M
- Agrawal N
- Ahammed Z
- Ahmad S
- Ahn S.U
- Ahuja I
- Akindinov A
- Al-Turany M
- Aleksandrov D
- Alessandro B
- Alfanda H.M
- Alfaro Molina R
- Ali B
- Alici A
- Alizadehvandchali N
- Alkin A
- Alme J
- Alocco G
- Alt T
- Altamura A.R
- Altsybeev I
- Alvarado J.R
- Anaam M.N
- Andrei C
- Andreou N
- Andronic A
- Anguelov V
- Antinori F
- Antonioli P
- Apadula N
- Aphecetche L
- Appelshäuser H
- Arata C
- Arcelli S
- Aresti M
- Arnaldi R
- Arneiro J.G.M.C.A
- Arsene I.C
- Arslandok M
- Augustinus A
- Averbeck R
- Azmi M.D
- Baba H
- Badalà A
- Bae J
- Baek Y.W
- Bai X
- Bailhache R
- Bailung Y
- Balbino A
- Baldisseri A
- Balis B
- Banerjee D
- Banoo Z
- Barbera R
- Barile F
- Barioglio L
- Barlou M
- Barman B
- Barnaföldi G.G
- Barnby L.S
- Barret V
- Barreto L
- Bartels C
- Barth K
- Bartsch E
- Bastid N
- Basu S
- Batigne G
- Battistini D
- Batyunya B
- Bauri D
- Bazo Alba J.L
- Bearden I.G
- Beattie C
- Becht P
- Behera D
- Belikov I
- Bell Hechavarria A.D.C
- Bellini F
- Bellwied R
- Belokurova S
- Beltran Y.A.V
- Bencedi G
- Beole S
- Berdnikov Y
- Berdnikova A
- Bergmann L
- Besoiu M.G
- Betev L
- Bhaduri P.P
- Bhasin A
- Bhat M.A
- Bhattacharjee B
- Bianchi L
- Bianchi N
- Bielčík J
- Bielčíková J
- Biernat J
- Bigot A.P
- Bilandzic A
- Biro G
- Biswas S
- Bize N
- Blair J.T
- Blau D
- Blidaru M.B
- Bluhme N
- Blume C
- Boca G
- Bock F
- Bodova T
- Bogdanov A
- Boi S
- Bok J
- Boldizsár L
- Bombara M
- Bond P.M
- Bonomi G
- Borel H
- Borissov A
- Borquez Carcamo A.G
- Bossi H
- Botta E
- Bouziani Y.E.M
- Bratrud L
- Braun-Munzinger P
- Bregant M
- Broz M
- Bruno G.E
- Buckland M.D
- Budnikov D
- Buesching H
- Bufalino S
- Buhler P
- Burmasov N
- Buthelezi Z
- Bylinkin A
- Bysiak S.A
- Cai M
- Caines H
- Caliva A
- Calvo Villar E
- Camacho J.M.M
- Camerini P
- Canedo F.D.M
- Cantway S.L
- Carabas M
- Carballo A.A
- Carnesecchi F
- Caron R
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- Catalano F
- Ceballos Sanchez C
- Chakaberia I
- Chakraborty P
- Chandra S
- Chapeland S
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- Chattopadhyay S
- Chattopadhyay S
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- Chibante Barroso V
- Chinellato D.D
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- Cho J
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- Chochula P
- Choudhury D
- Christakoglou P
- Christensen C.H
- Christiansen P
- Chujo T
- Ciacco M
- Cicalo C
- Cindolo F
- Ciupek M.R
- Clai G
- Colamaria F
- Colburn J.S
- Colella D
- Colocci M
- Concas M
- Conesa Balbastre G
- Conesa del Valle Z
- Contin G
- Contreras J.G
- Coquet M.L
- Cortese P
- Cosentino M.R
- Costa F
- Costanza S
- Cot C
- Crkovská J
- Crochet P
- Cruz-Torres R
- Cui P
- Dainese A
- Danisch M.C
- Danu A
- Das P
- Das P
- Das S
- Dash A.R
- Dash S
- de Caro A
- de Cataldo G
- de Cuveland J
- de Falco A
- de Gruttola D
- de Marco N
- de Martin C
- de Pasquale S
- Deb R
- del Grande R
- Dello Stritto L
- Deng W
- Dhankher P
- Di Bari D
- Di Mauro A
- Diab B
- Diaz R.A
- Dietel T
- Ding Y
- Ditzel J
- Divià R
- Dixit D.U
- Djuvsland Ø
- Dmitrieva U
- Dobrin A
- Dubinski J.M
- Dubla A
- Dudi S
- Dupieux P
- Durkac M
- Dzalaiova N
- Dönigus B
- Eder T.M
- Ehlers R.J
- Eisenhut F
- Ejima R
- Elia D
- Erazmus B
- Ercolessi F
- Espagnon B
- Eulisse G
- Evans D
- Evdokimov S
- Fabbietti L
- Faggin M
- Faivre J
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- Fasel M
- Fecchio P
- Feliciello A
- Feofilov G
- Fernández Téllez A
- Ferrandi L
- Ferrer M.B
- Ferrero A
- Ferrero C
- Ferretti A
- Feuillard V.J.G
- Filova V
- Finogeev D
- Fionda F.M
- Flatland E
- Flor F
- Flores A.N
- Foertsch S
- Fokin I
- Fokin S
- Fragiacomo E
- Frajna E
- Fuchs U
- Funicello N
- Furget C
- Furs A
- Fusayasu T
- Gaardhøje J.J
- Gagliardi M
- Gago A.M
- Gahlaut T
- Galvan C.D
- Gangadharan D.R
- Ganoti P
- Garabatos C
- Garcia-Solis E
- García Chávez T
- Gargiulo C
- Gasik P
- Gautam A
- Gay Ducati M.B
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- Ghimouz A
- Ghosh C
- Giacalone M
- Gioachin G
- Giubellino P
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- Glaenzer A.M.C
- Glimos E
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- Gonzalez V
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- Gotovac S
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- Graczykowski L.K
- Grecka E
- Grelli A
- Grigoras C
- Grigoriev V
- Grigoryan S
- Grosa F
- Grosse-Oetringhaus J.F
- Grosso R
- Grund D
- Grunwald N.A
- Guardiano G.G
- Guernane R
- Guilbaud M
- Gulbrandsen K
- Gunji T
- Guo W
- Gupta A
- Gupta R
- Gupta R
- Gwizdziel K
- Gyulai L
- Gündem T
- Hadjidakis C
- Haider F.U
- Haidlova S
- Hamagaki H
- Hamdi A
- Han Y
- Hanley B.G
- Hannigan R
- Hansen J
- Haque M.R
- Harris J.W
- Harton A
- Hassan H
- Hatzifotiadou D
- Hauer P
- Havener L.B
- Heckel S.T
- Hellbär E
- Helstrup H
- Hemmer M
- Herman T
- Herrera Corral G
- Herrmann F
- Herrmann S
- Hetland K.F
- Heybeck B
- Hillemanns H
- Hippolyte B
- Hoffmann F.W
- Hofman B
- Hong G.H
- Horst M
- Horzyk A
- Hou Y
- Hristov P
- Hughes C
- Huhn P
- Huhta L.M
- Humanic T.J
- Hutson A
- Hutter D
- Ilkaev R
- Ilyas H
- Inaba M
- Innocenti G.M
- Ippolitov M
- Isakov A
- Isidori T
- Islam M.S
- Ivanov M
- Ivanov M
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- Iversen K.E
- Jablonski M
- Jacak B
- Jacazio N
- Jacobs P.M
- Jadlovska S
- Jadlovsky J
- Jaelani S
- Jahnke C
- Jakubowska M.J
- Janik M.A
- Janson T
- Ji S
- Jia S
- Jimenez A.A.P
- Jonas F
- Jones D.M
- Jowett J.M
- Jung J
- Jung M
- Junique A
- Jusko A
- Kabus M.J
- Kaewjai J
- Kalinak P
- Kalteyer A.S
- Kalweit A
- Kaplin V
- Karasu Uysal A
- Karatovic D
- Karavichev O
- Karavicheva T
- Karczmarczyk P
- Karpechev E
- Kebschull U
- Keidel R
- Keijdener D.L.D
- Keil M
- Ketzer B
- Khade S.S
- Khan A.M
- Khan S
- Khanzadeev A
- Kharlov Y
- Khatun A
- Khuntia A
- Kileng B
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- Kirsch S
- Kisel I
- Kiselev S
- Kisiel A
- Kitowski J.P
- Klay J.L
- Klein J
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- Kluge A
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- Konig J
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- Kornakov G
- Korwieser M
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- Kotliarov A
- Kovalenko V
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- Kravčáková A
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- Kroesen M
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- Kumaoka T
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- Kushpil S
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- Lavicka R
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- Lugo F.V
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- Lévai P
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- Mager M
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- Makariev M.V
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- Malik Q.W
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- Martínez García G
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- Wu Y
- Xu R
- Yadav A
- Yadav A.K
- Yalcin S
- Yamaguchi Y
- Yang S
- Yano S
- Yin Z
- Yoo I.-K
- Yoon J.H
- Yu H
- Yuan S
- Yuncu A
- Zaccolo V
- Zampolli C
- Zanone F
- Zardoshti N
- Zarochentsev A
- Zaviyalov N
- Zhalov M
- Zhang B
- Zhang C
- Zhang L
- Zhang S
- Zhang X
- Zhang Y
- Zhang Z
- Zhao M
- Zherebchevskii V
- Zhi Y
- Zhou D
- Zhou Y
- Zhu J
- Zhu Y
- Zugravel S.C
- Zurlo N
- Závada P
- Šafařík K
- Šerkšnytė L
- Publication venue
- HAL CCSD
- Publication date
- 01/01/2024
- Field of study
International audienceThe first measurements of K*(892)0 resonance production as a function of charged-particle multiplicity in Xe-Xe collisions at sNN=5.44 TeV and pp collisions ats=5.02 TeV using the ALICE detector are presented. The resonance is reconstructed at midrapidity (|y| < 0.5) using the hadronic decay channel K*0 →K±π∓. Measurements of transverse-momentum integrated yield, mean transverse-momentum, nuclear modification factor of K*0, and yield ratios of resonance to stable hadron (K*0/K) are compared across different collision systems (pp, p-Pb, Xe-Xe, and Pb-Pb) at similar collision energies to investigate how the production of K*0 resonances depends on the size of the system formed in these collisions. The hadronic rescattering effect is found to be independent of the size of colliding systems and mainly driven by the produced charged-particle multiplicity, which is a proxy of the volume of produced matter at the chemical freeze-out. In addition, the production yields of K*0 in Xe-Xe collisions are utilized to constrain the dependence of the kinetic freeze-out temperature on the system size using the hadron resonance gas–partial chemical equilibrium model
First measurement of <math><msubsup><mi mathvariant="normal">Λ</mi><mrow><mi>c</mi></mrow><mo>+</mo></msubsup></math> production down to <math><mrow><msub><mi>p</mi><mi>T</mi></msub><mo>=</mo><mn>0</mn></mrow></math> in <math><mrow><mi>p</mi><mi>p</mi></mrow></math> and <math><mi>p</mi></math>-Pb collisions at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>5.02</mn></mrow></math> TeV
- Author
- Acharya S
- Adamová D
- Adler A
- Aglieri Rinella G
- Agnello M
- Agrawal N
- Ahammed Z
- Ahmad S
- Ahn S.U
- Ahuja I
- Akindinov A
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- Vértesi R
- Völkl M.A
- Wang C
- Wang D
- Wang Y
- Wegrzynek A
- Weiglhofer F.T
- Wenzel S.C
- Wessels J.P
- Weyhmiller S.L
- Wiechula J
- Wikne J
- Wilk G
- Wilkinson J
- Willems G.A
- Windelband B
- Winn M
- Wright J.R
- Wu W
- Wu Y
- Xu R
- Yadav A
- Yadav A.K
- Yalcin S
- Yamaguchi Y
- Yang S
- Yano S
- Yin Z
- Yoo I.-K
- Yoon J.H
- Yuan S
- Yuncu A
- Zaccolo V
- Zampolli C
- Zanone F
- Zardoshti N
- Zarochentsev A
- Zaviyalov N
- Zhalov M
- Zhang B
- Zhang L
- Zhang S
- Zhang X
- Zhang Y
- Zhang Z
- Zhao M
- Zherebchevskii V
- Zhi Y
- Zhou D
- Zhou Y
- Zhu J
- Zhu Y
- Zugravel S.C
- Zurlo N
- Závada P
- Šafařík K
- Šerkšnytė L
- Publication venue
- HAL CCSD
- Publication date
- 01/01/2023
- Field of study
International audienceThe production of prompt Λc+ baryons has been measured at midrapidity in the transverse momentum interval 0<pT<1 GeV/c for the first time, in pp and p–Pb collisions at a center-of-mass energy per nucleon-nucleon collision sNN=5.02TeV. The measurement was performed in the decay channel Λc+→pKS0 by applying new decay reconstruction techniques using a Kalman-Filter vertexing algorithm and adopting a machine-learning approach for the candidate selection. The pT-integrated Λc+ production cross sections in both collision systems were determined and used along with the measured yields in Pb–Pb collisions to compute the pT-integrated nuclear modification factors RpPb and RAA of Λc+ baryons, which are compared to model calculations that consider nuclear modification of the parton distribution functions. The Λc+/D0 baryon-to-meson yield ratio is reported for pp and p–Pb collisions. Comparisons with models that include modified hadronization processes are presented, and the implications of the results on the understanding of charm hadronization in hadronic collisions are discussed. A significant (3.7σ) modification of the mean transverse momentum of Λc+ baryons is seen in p–Pb collisions with respect to pp collisions, while the pT-integrated Λc+/D0 yield ratio was found to be consistent between the two collision systems within the uncertainties
First measurement of prompt and non-prompt D⁎+ vector meson spin alignment in pp collisions at s=13 TeV
- Author
- A. Adler
- A. Akindinov
- A. Alici
- A. Alkin
- A. Andronic
- A. Augustinus
- A. Badalà
- A. Balbino
- A. Baldisseri
- A. Bercuci
- A. Berdnikova
- A. Bhasin
- A. Bilandzic
- A. Bogdanov
- A. Borissov
- A. Caliva
- A. Dainese
- A. Danu
- A. De Caro
- A. De Falco
- A. Di Mauro
- A. Dobrin
- A. Dubla
- A. Fantoni
- A. Feliciello
- A. Fernández Téllez
- A. Ferrero
- A. Ferretti
- A. Furs
- A. Gautam
- A. Ghimouz
- A. Grelli
- A. Gupta
- A. Hamdi
- A. Harton
- A. Horzyk
- A. Hutson
- A. Isakov
- A. Junique
- A. Jusko
- A. Kalweit
- A. Karasu Uysal
- A. Khanzadeev
- A. Khatun
- A. Khuntia
- A. Kisiel
- A. Kluge
- A. Kondratyev
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- Z. Zhang
- Ø. Djuvsland
- Publication venue
- Elsevier
- Publication date
- 01/11/2023
- Field of study
This letter reports the first measurement of spin alignment, with respect to the helicity axis, for D⁎+ vector mesons and their charge conjugates from charm-quark hadronisation (prompt) and from beauty-meson decays (non-prompt) in hadron collisions. The measurements were performed at midrapidity (|y|<0.8) as a function of transverse momentum (pT) in proton–proton (pp) collisions collected by ALICE at the centre-of-mass energy s=13TeV. The diagonal spin density matrix element ρ00 of D⁎+ mesons was measured from the angular distribution of the D⁎+→D0(→K−π+)π+ decay products, in the D⁎+ rest frame, with respect to the D⁎+ momentum direction in the pp centre of mass frame. The ρ00 value for prompt D⁎+ mesons is consistent with 1/3, which implies no spin alignment. However, for non-prompt D⁎+ mesons an evidence of ρ00 larger than 1/3 is found. The measured value of the spin density element is ρ00=0.455±0.022(stat.)±0.035(syst.) in the 5<pT<20GeV/c interval, which is consistent with a Pythia 8 Monte Carlo simulation coupled with the EvtGen package, which implements the helicity conservation in the decay of D⁎+ meson from beauty mesons. In non-central heavy-ion collisions, the spin of the D⁎+ mesons may be globally aligned with the direction of the initial angular momentum and magnetic field. Based on the results for pp collisions reported in this letter it is shown that alignment of non-prompt D⁎+ mesons due to the helicity conservation coupled to the collective anisotropic expansion may mimic the signal of global spin alignment in heavy-ion collisions
Exclusive and dissociative <math display="inline"><mi>J</mi><mo>/</mo><mi>ψ</mi></math> photoproduction, and exclusive dimuon production, in p-Pb collisions at <math display="inline"><mrow><msqrt><mrow><msub><mrow><mi>s</mi></mrow><mrow><mi>NN</mi></mrow></msub></mrow></msqrt><mo>=</mo><mn>8.16</mn><mtext> </mtext><mtext> </mtext><mi>TeV</mi></mrow></math>
- Author
- Acharya S
- Adamová D
- Adler A
- Aglieri Rinella G
- Agnello M
- Agrawal N
- Ahammed Z
- Ahmad S
- Ahn S.U
- Ahuja I
- Akindinov A
- Al-Turany M
- Aleksandrov D
- Alessandro B
- Alfanda H.M
- Alfaro Molina R
- Ali B
- Alici A
- Alizadehvandchali N
- Alkin A
- Alme J
- Alocco G
- Alt T
- Altsybeev I
- Anaam M.N
- Andrei C
- Andronic A
- Anguelov V
- Antinori F
- Antonioli P
- Apadula N
- Aphecetche L
- Appelshäuser H
- Arata C
- Arcelli S
- Aresti M
- Arnaldi R
- Arneiro J.G.M.C.A
- Arsene I.C
- Arslandok M
- Augustinus A
- Averbeck R
- Azmi M.D
- Badalà A
- Bae J
- Baek Y.W
- Bai X
- Bailhache R
- Bailung Y
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- Baldisseri A
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- Banerjee D
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- Barile F
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- Barnaföldi G.G
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- Publication venue
- HAL CCSD
- Publication date
- 01/01/2023
- Field of study
International audienceThe ALICE Collaboration reports three measurements in ultraperipheral proton-lead collisions at forward rapidity. The exclusive two-photon process γγ→μ+μ- and the exclusive photoproduction of J/ψ are studied. J/ψ photoproduction with proton dissociation is measured for the first time at a hadron collider. The cross section for the two-photon process of dimuons in the invariant mass range from 1 to 2.5 GeV/c2 agrees with leading-order quantum electrodynamics calculations. The exclusive and dissociative cross sections for J/ψ photoproductions are measured for photon-proton center-of-mass energies from 27 to 57 GeV. They are in good agreement with HERA results
Skewness and kurtosis of mean transverse momentum fluctuations at the LHC energies
- Author
- A. Akindinov
- A. Alici
- A. Alkin
- A. Andronic
- A. Augustinus
- A. Badalà
- A. Balbino
- A. Baldisseri
- A. Berdnikova
- A. Bhasin
- A. Bilandzic
- A. Bogdanov
- A. Borissov
- A. Bylinkin
- A. Caliva
- A. Dainese
- A. Danu
- A. De Caro
- A. De Falco
- A. Di Mauro
- A. Dobrin
- A. Dubla
- A. Fantoni
- A. Feliciello
- A. Fernández Téllez
- A. Ferrero
- A. Ferretti
- A. Furs
- A. Gautam
- A. Ghimouz
- A. Grelli
- A. Gupta
- A. Hamdi
- A. Harton
- A. Horzyk
- A. Hutson
- A. Isakov
- A. Junique
- A. Jusko
- A. Kalweit
- A. Karasu Uysal
- A. Khanzadeev
- A. Khatun
- A. Khuntia
- A. Kisiel
- A. Kluge
- A. Kondratyev
- A. Kotliarov
- A. Kravčáková
- A. Kurepin
- A. Kuryakin
- A. Lakrathok
- A. Lindner
- A. Maire
- A. Margotti
- A. Marín
- A. Masoni
- A. Mastroserio
- A. Matyja
- A. Menchaca-Rocha
- A. Modak
- A. Morsch
- A. Mulliri
- A. Nath
- A. Neagu
- A. Negru
- A. Nyanin
- A. Ohlson
- A. Onnerstad
- A. Ortiz Velasquez
- A. Palasciano
- A. Pop
- A. Rai
- A. Rakotozafindrabe
- A. Rehman
- A. Riabov
- A. Rosano
- A. Rossi
- A. Roy
- A. Rustamov
- A. Rybicki
- A. Schmah
- A. Schröter
- A. Sevcenco
- A. Shabetai
- A. Shangaraev
- A. Sharma
- A. Shatat
- A. Sturniolo
- A. Tauro
- A. Tavira García
- A. Telesca
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- A. Trifiró
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- U. Sharma
- V. Anguelov
- V. Barret
- V. Chibante Barroso
- V. Filova
- V. Gonzalez
- V. Grabski
- V. Grigoriev
- V. Ivanov
- V. Kaplin
- V. Kovalenko
- V. Kozhuharov
- V. Kuskov
- V. Kučera
- V. Lindenstruth
- V. Manko
- V. Manzari
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- V. Petrov
- V. Pozdniakov
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- V. Zherebchevskii
- V.A. Okorokov
- V.J.G. Feuillard
- V.K. Singh
- V.M. Sarti
- V.V. Torres
- W. Deng
- W. Fan
- W. Guo
- W. Riegler
- W. Rzesa
- W. Wu
- W.H. Trzaska
- X. Bai
- X. Li
- X. Lopez
- X. Peng
- X. Zhang
- Y. Bailung
- Y. Berdnikov
- Y. Ding
- Y. Han
- Y. Hou
- Y. Kharlov
- Y. Kwon
- Y. Mao
- Y. Melikyan
- Y. Miake
- Y. Pachmayer
- Y. Patley
- Y. Pestov
- Y. Ryabov
- Y. Sekiguchi
- Y. Sibiriak
- Y. Wang
- Y. Wang
- Y. Wu
- Y. Yamaguchi
- Y. Zhang
- Y. Zhi
- Y. Zhou
- Y. Zhu
- Y.A.V. Beltran
- Y.E.M. Bouziani
- Y.G. Ma
- Y.W. Baek
- Z. Ahammed
- Z. Banoo
- Z. Buthelezi
- Z. Conesa del Valle
- Z. Pugelova
- Z. Rescakova
- Z. Tang
- Z. Varga
- Z. Vilakazi
- Z. Yin
- Z. Zhang
- Ø. Djuvsland
- Publication venue
- Elsevier
- Publication date
- 01/03/2024
- Field of study
The first measurements of skewness and kurtosis of mean transverse momentum (〈pT〉) fluctuations are reported in Pb–Pb collisions at sNN = 5.02 TeV, Xe–Xe collisions at sNN = 5.44 TeV and pp collisions at s=5.02 TeV using the ALICE detector. The measurements are carried out as a function of system size 〈dNch/dη〉|η|<0.51/3, using charged particles with transverse momentum (pT) and pseudorapidity (η), in the range 0.2<pT<3.0 GeV/c and |η|<0.8, respectively. In Pb–Pb and Xe–Xe collisions, positive skewness is observed in the fluctuations of 〈pT〉 for all centralities, which is significantly larger than what would be expected in the scenario of independent particle emission. This positive skewness is considered a crucial consequence of the hydrodynamic evolution of the hot and dense nuclear matter created in heavy-ion collisions. Furthermore, similar observations of positive skewness for minimum bias pp collisions are also reported here. Kurtosis of 〈pT〉 fluctuations is found to be in good agreement with the kurtosis of Gaussian distribution, for most central Pb–Pb collisions. Hydrodynamic model calculations with MUSIC using Monte Carlo Glauber initial conditions are able to explain the measurements of both skewness and kurtosis qualitatively from semicentral to central collisions in Pb–Pb system. Color reconnection mechanism in PYTHIA8 model seems to play a pivotal role in capturing the qualitative behavior of the same measurements in pp collisions
Pseudorapidity dependence of anisotropic flow and its decorrelations using long-range multiparticle correlations in Pb–Pb and Xe–Xe collisions
- Author
- A. Adler
- A. Akindinov
- A. Alici
- A. Alkin
- A. Andronic
- A. Augustinus
- A. Badalà
- A. Balbino
- A. Baldisseri
- A. Berdnikova
- A. Bhasin
- A. Bilandzic
- A. Bogdanov
- A. Borissov
- A. Bylinkin
- A. Caliva
- A. Dainese
- A. Danu
- A. De Caro
- A. De Falco
- A. Di Mauro
- A. Dobrin
- A. Dubla
- A. Fantoni
- A. Feliciello
- A. Fernández Téllez
- A. Ferrero
- A. Ferretti
- A. Furs
- A. Gautam
- A. Ghimouz
- A. Grelli
- A. Gupta
- A. Hamdi
- A. Harton
- A. Horzyk
- A. Hutson
- A. Isakov
- A. Junique
- A. Jusko
- A. Kalweit
- A. Karasu Uysal
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- A. Khatun
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- S. Muhuri
- S. Murray
- S. Nese
- S. Nikolaev
- S. Nikulin
- S. Noh
- S. Oh
- S. Padhan
- S. Paisano-Guzmán
- S. Panebianco
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- S. Pisano
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- S. Prasad
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- S. Ragoni
- S. Rojas Torres
- S. Roy
- S. Sadhu
- S. Sadovsky
- S. Saha
- S. Sahoo
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- S. Sambyal
- S. Senyukov
- S. Sharma
- S. Sharma
- S. Shirinkin
- S. Siddhanta
- S. Singh
- S. Strazzi
- S. Sumowidagdo
- S. Swain
- S. Tang
- S. Thakur
- S. Tripathy
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- S. Vergara Limón
- S. Yalcin
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- S. Yuan
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- S.A. Rodríguez Ramírez
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- S.K. Saha
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- S.L. La Pointe
- S.S. Khade
- S.S. Räsänen
- S.T. Heckel
- S.U. Ahn
- T. Alt
- T. Bodova
- T. Cheng
- T. Chujo
- T. Dietel
- T. Fusayasu
- T. Gahlaut
- T. García Chávez
- T. Gunji
- T. Gündem
- T. Herman
- T. Isidori
- T. Janson
- T. Karavicheva
- T. Kim
- T. Klemenz
- T. Kollegger
- T. Kumaoka
- T. Mrnjavac
- T. Peitzmann
- T. Siemiarczuk
- T. Simantathammakul
- T. Sinha
- T. Tkacik
- T. Tork
- T. Tripathy
- T. Virgili
- T.A. Rancien
- T.B. Saramela
- T.B. Skaali
- T.F. Silva
- T.J. Humanic
- T.J. Shaba
- T.M. Eder
- T.M. Lelek
- T.P. Trzcinski
- T.S. Rogoschinski
- T.S. Tveter
- U. Dmitrieva
- U. Fuchs
- U. Kebschull
- U. Sharma
- V. Anguelov
- V. Barret
- V. Chibante Barroso
- V. Filova
- V. Gonzalez
- V. Grabski
- V. Grigoriev
- V. Ivanov
- V. Kaplin
- V. Kovalenko
- V. Kozhuharov
- V. Kučera
- V. Lindenstruth
- V. Manko
- V. Manzari
- V. Muccifora
- V. Nikulin
- V. Petrov
- V. Pozdniakov
- V. Riabov
- V. Sarritzu
- V. Singhal
- V. Sumberia
- V. Trubnikov
- V. Vechernin
- V. Vislavicius
- V. Zaccolo
- V. Zherebchevskii
- V.A. Okorokov
- V.J.G. Feuillard
- V.K. Singh
- V.M. Sarti
- V.V. Torres
- W. Deng
- W. Fan
- W. Guo
- W. Riegler
- W. Rzesa
- W. Wu
- W.H. Trzaska
- X. Bai
- X. Li
- X. Lopez
- X. Peng
- X. Zhang
- X.L. Li
- Y. Bailung
- Y. Berdnikov
- Y. Ding
- Y. Han
- Y. Hou
- Y. Kharlov
- Y. Kwon
- Y. Mao
- Y. Melikyan
- Y. Miake
- Y. Pachmayer
- Y. Patley
- Y. Pestov
- Y. Ryabov
- Y. Sekiguchi
- Y. Sibiriak
- Y. Wang
- Y. Wang
- Y. Wu
- Y. Yamaguchi
- Y. Zhang
- Y. Zhi
- Y. Zhou
- Y. Zhu
- Y.E.M. Bouziani
- Y.G. Ma
- Y.W. Baek
- Z. Ahammed
- Z. Banoo
- Z. Buthelezi
- Z. Conesa del Valle
- Z. Moravcova
- Z. Pugelova
- Z. Rescakova
- Z. Tang
- Z. Varga
- Z. Vilakazi
- Z. Yin
- Z. Zhang
- Ø. Djuvsland
- Publication venue
- Elsevier
- Publication date
- 01/03/2024
- Field of study
The pseudorapidity dependence of elliptic (v2), triangular (v3), and quadrangular (v4) flow coefficients of charged particles measured in Pb–Pb collisions at a centre-of-mass energy per nucleon pair of sNN=5.02TeV and in Xe–Xe collisions at sNN=5.44TeV with ALICE at the LHC are presented. The measurements are performed in the pseudorapidity range −3.5<η<5 for various centrality intervals using two- and multi-particle cumulants with the subevent method. The flow probability density function (p.d.f.) is studied with the ratio of flow coefficient v2 calculated with four- and two-particle cumulant, and suggests that the variance of flow p.d.f. is independent of pseudorapidity. The decorrelation of the flow vector in the longitudinal direction is probed using two-particle correlations. The results measured with respect to different reference regions in pseudorapidity exhibit differences, argued to be a result of saturating decorrelation effect above a certain pseudorapidity separation, in contrast to previous publications which assign this observation to non-flow effects. The results are compared to 3+1 dimensional hydrodynamic and the AMPT transport model calculations. Neither of the models is able to simultaneously describe the pseudorapidity dependence of measurements of anisotropic flow and its fluctuations. The results presented in this work highlight shortcomings in our current understanding of initial conditions and subsequent system expansion in the longitudinal direction. Therefore, they provide input for its improvement
Light (anti)nuclei production in Pb-Pb collisions at <math><mrow><msqrt><msub><mi>s</mi><mrow><mi>N</mi><mi>N</mi></mrow></msub></msqrt><mo>=</mo><mn>5.02</mn><mo> </mo><mi>TeV</mi></mrow></math>
- Author
- Acharya S
- Adamová D
- Adler A
- Aglieri Rinella G
- Agnello M
- Agrawal N
- Ahammed Z
- Ahmad S
- Ahn S.U
- Ahuja I
- Akindinov A
- Al-Turany M
- Aleksandrov D
- Alessandro B
- Alfanda H.M
- Alfaro Molina R
- Ali B
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- Altsybeev I
- Anaam M.N
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- Baek Y.W
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- Willems G.A
- Windelband B
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- Wu W
- Wu Y
- Xu R
- Yadav A
- Yadav A.K
- Yalcin S
- Yamaguchi Y
- Yang S
- Yano S
- Yin Z
- Yoo I.-K
- Yoon J.H
- Yuan S
- Yuncu A
- Zaccolo V
- Zampolli C
- Zanone F
- Zardoshti N
- Zarochentsev A
- Zaviyalov N
- Zhalov M
- Zhang B
- Zhang L
- Zhang S
- Zhang X
- Zhang Y
- Zhang Z
- Zhao M
- Zherebchevskii V
- Zhi Y
- Zhou D
- Zhou Y
- Zhu J
- Zhu Y
- Zugravel S.C
- Zurlo N
- Závada P
- Šafařík K
- Šerkšnytė L
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/2023
- Field of study
International audienceThe measurement of the production of deuterons, tritons and He3 and their antiparticles in Pb-Pb collisions at sNN=5.02TeV is presented in this article. The measurements are carried out at midrapidity (|y|< 0.5) as a function of collision centrality using the ALICE detector. The pT-integrated yields, the coalescence parameters and the ratios to protons and antiprotons are reported and compared with nucleosynthesis models. The comparison of these results in different collision systems at different center-of-mass collision energies reveals a suppression of nucleus production in small systems. In the Statistical Hadronisation Model framework, this can be explained by a small correlation volume where the baryon number is conserved, as already shown in previous fluctuation analyses. However, a different size of the correlation volume is required to describe the proton yields in the same data sets. The coalescence model can describe this suppression by the fact that the wave functions of the nuclei are large and the fireball size starts to become comparable and even much smaller than the actual nucleus at low multiplicities
Accessing the strong interaction between Λ baryons and charged kaons with the femtoscopy technique at the LHC
- Author
- A. Adler
- A. Akindinov
- A. Alici
- A. Alkin
- A. Andronic
- A. Augustinus
- A. Badalà
- A. Balbino
- A. Baldisseri
- A. Bercuci
- A. Berdnikova
- A. Bhasin
- A. Bilandzic
- A. Bogdanov
- A. Borissov
- A. Bylinkin
- A. Caliva
- A. Dainese
- A. Danu
- A. De Caro
- A. De Falco
- A. Di Mauro
- A. Dobrin
- A. Dubla
- A. Fantoni
- A. Feliciello
- A. Fernández Téllez
- A. Ferrero
- A. Ferretti
- A. Furs
- A. Gautam
- A. Ghimouz
- A. Grelli
- A. Gupta
- A. Hamdi
- A. Harton
- A. Horzyk
- A. Hutson
- A. Isakov
- A. Junique
- A. Jusko
- A. Kalweit
- A. Karasu Uysal
- A. Khanzadeev
- A. Khatun
- A. Khuntia
- A. Kisiel
- A. Kluge
- A. Kondratyev
- A. Kotliarov
- A. Kravčáková
- A. Kurepin
- A. Kuryakin
- A. Lakrathok
- A. Lindner
- A. Liu
- A. Maire
- A. Margotti
- A. Marín
- A. Masoni
- A. Mastroserio
- A. Matyja
- A. Menchaca-Rocha
- A. Modak
- A. Morsch
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- A. Nath
- A. Neagu
- A. Negru
- A. Nyanin
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- A. Onnerstad
- A. Ortiz Velasquez
- A. Palasciano
- A. Pop
- A. Rakotozafindrabe
- A. Rehman
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- R. Shahoyan
- R. Simeonov
- R. Singh
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- R. Singh
- R. Spijkers
- R. Sultanov
- R. Tokumoto
- R. Turrisi
- R. Verma
- R. Vértesi
- R. Xu
- R.A. Diaz
- R.C. Lemmon
- R.E. Quishpe
- R.H. Munzer
- R.J. Ehlers
- R.J.G. van Weelden
- R.J.M. Snellings
- R.M.H. David
- R.N. Patra
- R.P. Pezzi
- R.W. Marcjan
- S. Acharya
- S. Ahmad
- S. Arcelli
- S. Basu
- S. Belokurova
- S. Beole
- S. Biswas
- S. Boi
- S. Bufalino
- S. Chandra
- S. Chapeland
- S. Chattopadhyay
- S. Chattopadhyay
- S. Cho
- S. Costanza
- S. Das
- S. Dash
- S. De Pasquale
- S. Deb
- S. Dudi
- S. Evdokimov
- S. Foertsch
- S. Fokin
- S. Gotovac
- S. Grigoryan
- S. Herrmann
- S. Jadlovska
- S. Jaelani
- S. Ji
- S. Jia
- S. Khan
- S. Kim
- S. Kirsch
- S. Kiselev
- S. Klein
- S. Kumar
- S. Kundu
- S. Kushpil
- S. Lokos
- S. Masciocchi
- S. Mattiazzo
- S. Mhlanga
- S. Monira
- S. Muhuri
- S. Murray
- S. Nese
- S. Nikolaev
- S. Nikulin
- S. Noh
- S. Oh
- S. Padhan
- S. Panebianco
- S. Perciballi
- S. Piano
- S. Pisano
- S. Politano
- S. Porteboeuf-Houssais
- S. Prasad
- S. Pucillo
- S. Qiu
- S. Ragoni
- S. Rojas Torres
- S. Roy
- S. Sadhu
- S. Sadovsky
- S. Saha
- S. Sahoo
- S. Sakai
- S. Sambyal
- S. Senyukov
- S. Sharma
- S. Sharma
- S. Shirinkin
- S. Siddhanta
- S. Singh
- S. Strazzi
- S. Sumowidagdo
- S. Swain
- S. Tang
- S. Thakur
- S. Tripathy
- S. Trogolo
- S. Vergara Limón
- S. Yalcin
- S. Yang
- S. Yano
- S. Yuan
- S. Zhang
- S.A. Bysiak
- S.A. Konigstorfer
- S.A. Voloshin
- S.A.R. Ramirez
- S.C. Wenzel
- S.C. Zugravel
- S.D. Koryciak
- S.F. Stiefelmaier
- S.F. Taghavi
- S.H. Lim
- S.K. Malik
- S.K. Mandal
- S.K. Prasad
- S.K. Saha
- S.L. La Pointe
- S.L. Weyhmiller
- S.P. Guzman
- S.S. Khade
- S.S. Räsänen
- S.T. Heckel
- S.U. Ahn
- T. Alt
- T. Bodova
- T. Cheng
- T. Chujo
- T. Dietel
- T. Fusayasu
- T. Gahlaut
- T. Gundem
- T. Gunji
- T. Herman
- T. Hyodo
- T. Isidori
- T. Janson
- T. Karavicheva
- T. Kim
- T. Klemenz
- T. Kollegger
- T. Kumaoka
- T. Mrnjavac
- T. Peitzmann
- T. Siemiarczuk
- T. Simantathammakul
- T. Sinha
- T. Tkacik
- T. Tork
- T. Tripathy
- T. Virgili
- T.A. Rancien
- T.B. Saramela
- T.B. Skaali
- T.F. Silva
- T.G. Chavez
- T.J. Humanic
- T.J. Shaba
- T.M. Eder
- T.M. Lelek
- T.P. Trzcinski
- T.S. Rogoschinski
- T.S. Tveter
- U. Dmitrieva
- U. Fuchs
- U. Kebschull
- U. Sharma
- V. Anguelov
- V. Barret
- V. Chibante Barroso
- V. Filova
- V. Gonzalez
- V. Grabski
- V. Grigoriev
- V. Ivanov
- V. Kaplin
- V. Kovalenko
- V. Kozhuharov
- V. Kučera
- V. Lindenstruth
- V. Manko
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- V. Muccifora
- V. Nikulin
- V. Petrov
- V. Pozdniakov
- V. Riabov
- V. Sarritzu
- V. Singhal
- V. Sumberia
- V. Trubnikov
- V. Vechernin
- V. Vislavicius
- V. Zaccolo
- V. Zherebchevskii
- V.A. Okorokov
- V.J.G. Feuillard
- V.K. Singh
- V.M. Sarti
- V.V. Torres
- W. Deng
- W. Fan
- W. Guo
- W. Riegler
- W. Rzesa
- W. Wu
- W.H. Trzaska
- X. Bai
- X. Li
- X. Lopez
- X. Peng
- X. Zhang
- X.L. Li
- Y. Bailung
- Y. Berdnikov
- Y. Ding
- Y. Han
- Y. Hou
- Y. Kamiya
- Y. Kharlov
- Y. Kwon
- Y. Mao
- Y. Melikyan
- Y. Miake
- Y. Pachmayer
- Y. Patley
- Y. Pestov
- Y. Ryabov
- Y. Sekiguchi
- Y. Sibiriak
- Y. Wang
- Y. Wang
- Y. Wu
- Y. Yamaguchi
- Y. Zhang
- Y. Zhi
- Y. Zhou
- Y. Zhu
- Y.E.M. Bouziani
- Y.G. Ma
- Y.W. Baek
- Z. Ahammed
- Z. Banoo
- Z. Buthelezi
- Z. Conesa del Valle
- Z. Moravcova
- Z. Pugelova
- Z. Rescakova
- Z. Tang
- Z. Varga
- Z. Vilakazi
- Z. Yin
- Z. Zhang
- Ø. Djuvsland
- Publication venue
- Elsevier
- Publication date
- 01/10/2023
- Field of study
The interaction between Λ baryons and kaons/antikaons is a crucial ingredient for the strangeness S=0 and S=−2 sector of the meson–baryon interaction at low energies. In particular, the ΛK‾ might help in understanding the origin of states such as the Ξ(1620), whose nature and properties are still under debate. Experimental data on Λ–K and Λ–K‾ systems are scarce, leading to large uncertainties and tension between the available theoretical predictions constrained by such data. In this Letter we present the measurements of Λ–K⊕+Λ‾–K− and Λ–K⊕−Λ‾–K+ correlations obtained in the high-multiplicity triggered data sample in pp collisions at s=13 TeV recorded by ALICE at the LHC. The correlation function for both pairs is modeled using the Lednický–Lyuboshits analytical formula and the corresponding scattering parameters are extracted. The Λ–K⊕−Λ‾–K+ correlations show the presence of several structures at relative momenta k⁎ above 200 MeV/c, compatible with the Ω baryon, the Ξ(1690), and Ξ(1820) resonances decaying into Λ–K− pairs. The low k⁎ region in the Λ–K⊕−Λ‾–K+ also exhibits the presence of the Ξ(1620) state, expected to strongly couple to the measured pair. The presented data allow to access the ΛK+ and ΛK− strong interaction with an unprecedented precision and deliver the first experimental observation of the Ξ(1620) decaying into ΛK−
Pseudorapidity densities of charged particles with transverse momentum thresholds in pp collisions at <math display="inline"><mrow><msqrt><mrow><mi>s</mi></mrow></msqrt><mo>=</mo><mn>5.02</mn></mrow></math> and 13 TeV
- Author
- Acharya S
- Adamová D
- Adler A
- Aglieri Rinella G
- Agnello M
- Agrawal N
- Ahammed Z
- Ahmad S
- Ahn S.U
- Ahuja I
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- Alessandro B
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- Weiglhofer F.T
- Wenzel S.C
- Wessels J.P
- Weyhmiller S.L
- Wiechula J
- Wikne J
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- Wilkinson J
- Willems G.A
- Windelband B
- Winn M
- Wright J.R
- Wu W
- Wu Y
- Xu R
- Yadav A
- Yadav A.K
- Yalcin S
- Yamaguchi Y
- Yang S
- Yano S
- Yin Z
- Yoo I.-K
- Yoon J.H
- Yuan S
- Yuncu A
- Zaccolo V
- Zampolli C
- Zanone F
- Zardoshti N
- Zarochentsev A
- Zaviyalov N
- Zhalov M
- Zhang B
- Zhang L
- Zhang S
- Zhang X
- Zhang Y
- Zhang Z
- Zhao M
- Zherebchevskii V
- Zhi Y
- Zhou D
- Zhou Y
- Zhu J
- Zhu Y
- Zugravel S.C
- Zurlo N
- Závada P
- Šafařík K
- Šerkšnytė L
- Publication venue
- HAL CCSD
- Publication date
- 01/01/2023
- Field of study
International audienceThe pseudorapidity density of charged particles with minimum transverse momentum (pT) thresholds of 0.15, 0.5, 1, and 2 GeV/c is measured in pp collisions at the center of mass energies of s=5.02 and 13 TeV with the ALICE detector. The study is carried out for inelastic collisions with at least one primary charged particle having a pseudorapidity (η) within ±0.8 and pT larger than the corresponding threshold. In addition, measurements without pT-thresholds are performed for inelastic and nonsingle-diffractive events as well as for inelastic events with at least one charged particle having |η|<1 in pp collisions at s=5.02 TeV for the first time at the LHC. These measurements are compared to the pythia 6, pythia 8, and epos-lhc models. In general, the models describe the η dependence of particle production well. However, discrepancies are observed for the highest transverse momentum threshold (pT>2 GeV/c), highlighting the importance of such measurements for tuning event generators. The new measurements agree within uncertainties with results from the ATLAS and CMS experiments obtained at s=13 TeV
Exclusive and dissociative <math display="inline"><mi>J</mi><mo>/</mo><mi>ψ</mi></math> photoproduction, and exclusive dimuon production, in p-Pb collisions at <math display="inline"><mrow><msqrt><mrow><msub><mrow><mi>s</mi></mrow><mrow><mi>NN</mi></mrow></msub></mrow></msqrt><mo>=</mo><mn>8.16</mn><mtext> </mtext><mtext> </mtext><mi>TeV</mi></mrow></math>
- Author
- Acharya S
- Adamová D
- Adler A
- Aglieri Rinella G
- Agnello M
- Agrawal N
- Ahammed Z
- Ahmad S
- Ahn S.U
- Ahuja I
- Akindinov A
- Al-Turany M
- Aleksandrov D
- Alessandro B
- Alfanda H.M
- Alfaro Molina R
- Ali B
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- Alkin A
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- Alocco G
- Alt T
- Altsybeev I
- Anaam M.N
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- Arsene I.C
- Arslandok M
- Augustinus A
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- Azmi M.D
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- Baek Y.W
- Bai X
- Bailhache R
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- Schmidt C
- Schmidt H.R
- Schmidt M
- Schmidt M.O
- Schmidt N.V
- Schmier A.R
- Schotter R
- Schröter A
- Schukraft J
- Schwarz K
- Schweda K
- Scioli G
- Scomparin E
- Seger J.E
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- Sekihata D
- Selyuzhenkov I
- Senyukov S
- Seo J.J
- Serebryakov D
- Sevcenco A
- Shaba T.J
- Shabetai A
- Shahoyan R
- Shangaraev A
- Sharma A
- Sharma B
- Sharma D
- Sharma H
- Sharma M
- Sharma S
- Sharma S
- Sharma U
- Shatat A
- Sheibani O
- Shigaki K
- Shimomura M
- Shin J
- Shirinkin S
- Shou Q
- Sibiriak Y
- Siddhanta S
- Siemiarczuk T
- Silva T.F
- Silvermyr D
- Simantathammakul T
- Simeonov R
- Singh B
- Singh B
- Singh K
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- Singh S
- Singh V.K
- Singhal V
- Sinha T
- Sitar B
- Sitta M
- Skaali T.B
- Skorodumovs G
- Slupecki M
- Smirnov N
- Snellings R.J.M
- Solheim E.H
- Song J
- Songmoolnak A
- Sonnabend C
- Soramel F
- Soto-Hernandez A.B
- Spijkers R
- Sputowska I
- Staa J
- Stachel J
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- Stiefelmaier S.F
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- Storehaug I
- Stratmann P
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- Stylianidis C.P
- Suaide A.A.P
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- Suljic M
- Sultanov R
- Sumberia V
- Sumowidagdo S
- Swain S
- Szarka I
- Szymkowski M
- Taghavi S.F
- Taillepied G
- Takahashi J
- Tambave G.J
- Tang S
- Tang Z
- Tapia Takaki J.D
- Tapus N
- Tarasovicova L.A
- Tarzila M.G
- Tassielli G.F
- Tauro A
- Tejeda Muñoz G
- Telesca A
- Terlizzi L
- Terrevoli C
- Thakur S
- Thomas D
- Tikhonov A
- Timmins A.R
- Tkacik M
- Tkacik T
- Toia A
- Tokumoto R
- Topilskaya N
- Toppi M
- Tork T
- Torres Ramos A.G
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- Triolo A.S
- Tripathy S
- Tripathy T
- Trogolo S
- Trubnikov V
- Trzaska W.H
- Trzcinski T.P
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- Turrisi R
- Tveter T.S
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- Ulukutlu B
- Uras A
- Urioni M
- Usai G.L
- Vala M
- Valle N
- van Doremalen L.V.R
- van Leeuwen M
- van Veen C.A
- van Weelden R.J.G
- Vande Vyvre P
- Varga D
- Varga Z
- Vasileiou M
- Vasiliev A
- Vechernin V
- Vercellin E
- Vergara Limón S
- Vermunt L
- Verweij M
- Vickovic L
- Vilakazi Z
- Villalobos Baillie O
- Villani A
- Vino G
- Vinogradov A
- Virgili T
- Virta M.M.O
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- Vodopyanov A
- Volkel B
- Voloshin K
- Voloshin S.A
- Volpe G
- von Haller B
- Vorobyev I
- Vozniuk N
- Vrláková J
- Vázquez Doce O
- Vértesi R
- Völkl M.A
- Wan J
- Wang C
- Wang D
- Wang Y
- Wegrzynek A
- Weiglhofer F.T
- Wenzel S.C
- Wessels J.P
- Weyhmiller S.L
- Wiechula J
- Wikne J
- Wilk G
- Wilkinson J
- Willems G.A
- Windelband B
- Winn M
- Wright J.R
- Wu W
- Wu Y
- Xu R
- Yadav A
- Yadav A.K
- Yalcin S
- Yamaguchi Y
- Yang S
- Yano S
- Yin Z
- Yoo I.-K
- Yoon J.H
- Yu H
- Yuan S
- Yuncu A
- Zaccolo V
- Zampolli C
- Zanone F
- Zardoshti N
- Zarochentsev A
- Zaviyalov N
- Zhalov M
- Zhang B
- Zhang L
- Zhang S
- Zhang X
- Zhang Y
- Zhang Z
- Zhao M
- Zherebchevskii V
- Zhi Y
- Zhou D
- Zhou Y
- Zhu J
- Zhu Y
- Zugravel S.C
- Zurlo N
- Závada P
- Šafařík K
- Šerkšnytė L
- Publication venue
- HAL CCSD
- Publication date
- 01/01/2023
- Field of study
International audienceThe ALICE Collaboration reports three measurements in ultraperipheral proton-lead collisions at forward rapidity. The exclusive two-photon process γγ→μ+μ- and the exclusive photoproduction of J/ψ are studied. J/ψ photoproduction with proton dissociation is measured for the first time at a hadron collider. The cross section for the two-photon process of dimuons in the invariant mass range from 1 to 2.5 GeV/c2 agrees with leading-order quantum electrodynamics calculations. The exclusive and dissociative cross sections for J/ψ photoproductions are measured for photon-proton center-of-mass energies from 27 to 57 GeV. They are in good agreement with HERA results