Pseudorapidity dependence of the pT spectra of charged hadrons in pp collisions at √S=0.9 and 2.36 TeV

被引:20
|
作者
Yang, Pei-Pin [1 ,2 ]
Ajaz, M. [3 ]
Waqas, M. [4 ]
Liu, Fu-Hu [1 ,2 ]
Suleymanov, M. K. [5 ]
机构
[1] Shanxi Univ, Inst Theoret Phys, State Key Lab Quantum Opt & Quantum Opt Devices, Taiyuan 030006, Peoples R China
[2] Shanxi Univ, Collaborat Innovat Ctr Extreme Opt, Taiyuan 030006, Peoples R China
[3] Abdul Wall Khan Univ Mardan, Dept Phys, Mardan 23200, Pakistan
[4] Univ Chinese Acad Sci, Sch Nucl Sci & Technol, Beijing 100049, Peoples R China
[5] Baku State Univ, Dept Phys, Baku, Azerbaijan
基金
中国国家自然科学基金;
关键词
transverse momentum spectra; pseudorapidity distribution; Monte Carlo prediction; bulk properties of nuclear matter; TRANSVERSE FLOW VELOCITY; FREEZE-OUT TEMPERATURE; PARTICLE DENSITIES; NUCLEUS-NUCLEUS; AU COLLISIONS; QGSJET-II; PARTON; MODEL;
D O I
10.1088/1361-6471/ac5d0b
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
We report the predictions of different Monte Carlo event generators including HUING, Pythia, and QGSJETII in comparison with the experimental data measured by the CMS Collaboration at CERN in proton-proton (pp) collisions at center-of-mass energy root s = 0.9 and 2.36 TeV. The CMS experimental transverse momentum (p(T) or p(perpendicular to)) spectra of charged hadrons were measured for pseudorapidity range 0 <= eta <= 2.4 with bin width of eta = 0.2 (for p(T) from 0.1 to 2 GeV/c) and a single bin of eta for vertical bar eta vertical bar< 2.4 (for p(T) from 0.1 to 4 GeV/c). Pythia reproduced the p(T) spectra with reasonable agreement for most of the p(T) range. It depicts better results in the case of the vertical bar eta vertical bar < 2.4 than HUING and QGSJETII which could reproduce the spectra in a limited p(T) range. Furthermore, to analyze the p(T) spectra of charged hadrons measured by the CMS Collaboration, we used a three-component function (structured from the Boltzmann distribution) and the q-dual function (from the q-dual statistics) to extract parameter values relevant for the study of bulk properties of hadronic matter at high energy. We have also applied the two analytic functions over the model predictions. The values extracted by the functions from the RUING and Pythia models are closer to the experimental data than the QGSJETII model. Although the models could reproduce the p(T) spectra of all charged particles in some of the p(T) range but none of them could reproduce the distributions over the entire p(T )range and in all the pseudorapidity regions.
引用
收藏
页数:21
相关论文
共 50 条
  • [1] Pseudorapidity dependence of the transverse momentum distribution of charged particles in pp collisions at 0.9, 2.36, and 7 TeV
    Waqas, M.
    Peng, G. X.
    Ajaz, M.
    Khubrani, A. M.
    Dawi, E. A.
    Khan, M. Adil
    Tawfik, A.
    RESULTS IN PHYSICS, 2022, 42
  • [2] Pseudorapidity dependence of the bulk properties of hadronic medium in pp collisions at 7 TeV
    Ajaz, Muhammad
    Haj Ismail, Abd Al Karim
    Waqas, Muhammad
    Suleymanov, Mais
    AbdelKader, Atef
    Suleymanov, Rustam
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [3] Pseudorapidity, transverse momentum and multiplicity distributions of charged particles in pp collisions at 13 TeV
    Waqas, M.
    Peng, G. X.
    Khubrani, A. M.
    Ajaz, M.
    Tabassam, U.
    Yang, Pei-Pin
    EUROPEAN PHYSICAL JOURNAL PLUS, 2023, 138 (05)
  • [4] Pseudorapidity distributions of charged hadrons in xenon-xenon collisions at √SNN=5.44 TeV
    Sirunyan, A. M.
    Tumasyan, A.
    Adam, W.
    Ambrogi, F.
    Asilar, E.
    Bergauer, T.
    Brandstetter, J.
    Dragicevic, M.
    Eroe, J.
    Del Valle, A. Escalante
    Flechl, M.
    Fruehwirth, R.
    Ghete, V. M.
    Hrubec, J.
    Jeitler, M.
    Krammer, N.
    Kraetschmer, I.
    Liko, D.
    Madlener, T.
    Mikulec, I.
    Rad, N.
    Rohringer, H.
    Schieck, J.
    Schoefbeck, R.
    Spanring, M.
    Spitzbart, D.
    Taurok, A.
    Waltenberger, W.
    Wittmann, J.
    Wulz, C. -E.
    Zarucki, M.
    Chekhovsky, V.
    Mossolov, V.
    Gonzalez, J. Suarez
    De Wolf, E. A.
    Di Croce, D.
    Janssen, X.
    Lauwers, J.
    Pieters, M.
    Van De Klundert, M.
    Janssen, X.
    Lauwers, J.
    Pieters, M.
    Van De Klundert, M.
    Van Haevermaet, H.
    Van Mechelen, P.
    Van Remortel, N.
    Abu Zeid, S.
    Blekman, F.
    D'Hondt, J.
    PHYSICS LETTERS B, 2019, 799
  • [5] Pseudorapidity distributions of charged hadrons in proton-lead collisions at √sNN=5:02 and 8.16 TeV
    Sirunyan, A. M.
    Tumasyan, A.
    Adam, W.
    Ambrogi, F.
    Asilar, E.
    Bergauer, T.
    Brandstetter, J.
    Brondolin, E.
    Dragicevic, M.
    Eroe, J.
    Flechl, M.
    Friedl, M.
    Fruehwirth, R.
    Ghete, V. M.
    Grossmann, J.
    Hrubec, J.
    Jeitler, M.
    Koeonig, A.
    Krammer, N.
    Kraetschmer, I.
    Liko, D.
    Madlener, T.
    Mikulec, I.
    Pree, E.
    Rad, N.
    Rohringer, H.
    Schieck, J.
    Schoefbeck, R.
    Spanring, M.
    Spitzbart, D.
    Waltenberger, W.
    Wittmann, J.
    Wulz, C. -E.
    Zarucki, M.
    Chekhovsky, V.
    Mossolov, V.
    Gonzalez, J. Suarez
    De Wolf, E. A.
    Di Croce, D.
    Janssen, X.
    Lauwers, J.
    Van de Klundert, M.
    Van Haevermaet, H.
    Van Mechelen, P.
    Van Remortel, N.
    Abu Zeid, S.
    Blekman, F.
    D'Hondt, J.
    De Bruyn, I.
    De Clercq, J.
    JOURNAL OF HIGH ENERGY PHYSICS, 2018, (01):
  • [6] Pseudorapidity distribution of energy density and distribution of charged particles in different categories of the final state in pp collisions at √s=13 TeV
    Ajaz, M.
    Khubrani, A. M.
    Waqas, M.
    Yasin, Z.
    Mughal, B. J.
    Hassan, S.
    Ali, S.
    Suleymanov, M. K.
    MODERN PHYSICS LETTERS A, 2022, 37 (16)
  • [7] Study of charged particles in pp collisions at √s=13 TeV
    Ajaz, M.
    Khubrani, A. M.
    Waqas, M.
    Yasin, Z.
    Hassan, S.
    Suleymanov, M. K.
    EUROPEAN PHYSICAL JOURNAL PLUS, 2022, 137 (12):
  • [8] Dependence on pseudorapidity and on centrality of charged hadron production in PbPb collisions at √sNN=2.76 TeV
    Sirunyan, A. M.
    Tumasyan, A.
    Adam, W.
    Bergauer, T.
    Dragicevic, M.
    Eroe, J.
    Fabjan, C.
    Friedl, M.
    Fruehwirth, R.
    Ghete, V. M.
    Hammer, J.
    Haensel, S.
    Hoch, M.
    Hoermann, N.
    Hrubec, J.
    Jeitler, M.
    Kiesenhofer, W.
    Krammer, M.
    Liko, D.
    Mikulec, I.
    Pernicka, M.
    Rahbaran, B.
    Rohringer, H.
    Schoefbeck, R.
    Strauss, J.
    Taurok, A.
    Teischinger, F.
    Trauner, C.
    Wagner, P.
    Waltenberger, W.
    Walzel, G.
    Widl, E.
    Wulz, C. -E.
    Mossolov, V.
    Shumeiko, N.
    Gonzalez, J. Suarez
    Bansal, S.
    Benucci, L.
    De Wolf, E. A.
    Janssen, X.
    Luyckx, S.
    Maes, T.
    Mucibello, L.
    Ochesanu, S.
    Roland, B.
    Rougny, R.
    Selvaggi, M.
    Van Haevermaet, H.
    Van Mechelen, P.
    Van Remortel, N.
    JOURNAL OF HIGH ENERGY PHYSICS, 2011, (08):
  • [9] pT spectra of charged hadrons in proton-proton collisions at ,√s=200 GeV
    Ajaz, M.
    Maryam
    MODERN PHYSICS LETTERS A, 2019, 34 (19)
  • [10] Search for a charged Higgs boson in pp collisions at √s=8 TeV
    Khachatryan, V.
    Sirunyan, A. M.
    Tumasyan, A.
    Adam, W.
    Asilar, E.
    Bergauer, T.
    Brandstetter, J.
    Brondolin, E.
    Dragicevic, M.
    Eroe, J.
    Flechl, M.
    Friedl, M.
    Fruehwirth, R.
    Ghete, V. M.
    Hartl, C.
    Hoermann, N.
    Hrubec, J.
    Jeitler, M.
    Knuenz, V.
    Koenig, A.
    Krammer, M.
    Kraetschmer, I.
    Liko, D.
    Matsushita, T.
    Mikulec, I.
    Rabady, D.
    Rahbaran, B.
    Rohringer, H.
    Schieck, J.
    Schoefbeck, R.
    Strauss, J.
    Treberer-Treberspurg, W.
    Waltenberger, W.
    Wulz, C. -E.
    Mossolov, V.
    Shumeiko, N.
    Gonzalez, J. Suarez
    Alderweireldt, S.
    Cornelis, T.
    De Wolf, E. A.
    Janssen, X.
    Knutsson, A.
    Lauwers, J.
    Luyckx, S.
    Rougny, R.
    Van De Klundert, M.
    Van Haevermaet, H.
    Van Mechelen, P.
    Van Remortel, N.
    Van Spilbeeck, A.
    JOURNAL OF HIGH ENERGY PHYSICS, 2015, (11): : 1 - 64