Journal ArticleDOI
Forward–backward multiplicity correlations at STAR
TLDR
This article measured forward-backward multiplicity correlations measured at STAR and reported a strong long-range correlation for inclusive charged hadrons as a function of pseudorapidity separation (Δ η ) in Au+Au collisions at s NN = 200 GeV.About:
This article is published in Nuclear Physics.The article was published on 2011-03-15. It has received 11 citations till now. The article focuses on the topics: Pseudorapidity & Hadron.read more
Citations
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Journal ArticleDOI
Entropy Analysis in Relativistic Heavy-Ion Collisions
TL;DR: In this paper, the experimental data on ion-ion collisions at AGS and SPS energies were analyzed and the results were compared with those predicted by multiphase transport and correlation-free Monte Carlo models.
Journal ArticleDOI
Forward-backward multiplicity correlation in high-energy nucleus-nucleus interactions at a few AGeV/c
TL;DR: In this paper, a systematic study of two-particle rapidity correlations in terms of investigating the dynamical fluctuation observable in the forward-backward pseudo-rapidity windows was presented.
Journal ArticleDOI
Short- and long-range multiplicity correlations in relativistic heavy-ion collisions
TL;DR: In this paper, the forward-backward (FB) charge correlations are investigated by analyzing experimental data on 16O-AgBr interactions at 14.5A, 60A and 200A GeV.
Journal ArticleDOI
Entropy scaling in ion–ion collisions at ags and sps energies
TL;DR: In this paper, the experimental data on nucleus-nucleus collisions at AGS and SPS energies reveals that entropy produced in a limited and full phase-space increases with increasing beam energy and mass of the colliding nuclei.
Journal ArticleDOI
Study of multiplicity correlations in nucleus–nucleus interactions at high energy
TL;DR: In this paper, the correlation between the multiplicities of the different charged particles emitted in the interactions of 22Ne and 28Si nuclei with emulsion at (4.1-4.5)A GeV/c have been studied.
References
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Journal ArticleDOI
Systematic measurements of identified particle spectra in pp, d+Au, and Au+Au collisions at the star detector.
B. I. Abelev,Madan M. Aggarwal,Zubayer Ahammed,B. D. Anderson,D. Arkhipkin,G. S. Averichev,Y. Bai,J. Balewski,O. Barannikova,Lee Stuart Barnby,J. Baudot,S. Baumgart,D. R. Beavis,R. Bellwied,F. Benedosso,Russell Richard Betts,S. Bhardwaj,Anju Bhasin,A. K. Bhati,H. Bichsel,Jaroslav Bielcik,Jana Bielcikova,B. Biritz,L. C. Bland,Marek Bombara,B. E. Bonner,M. Botje,J. Bouchet,Ermes Braidot,A. V. Brandin,Elena Bruna,S. Bueltmann,T. P. Burton,M. Bystersky,Xu Cai,H. Caines,M. Calderon De La Barca Sanchez,J. Callner,O. Catu,D. Cebra,R. Cendejas,M. C. Cervantes,Z. Chajecki,P. Chaloupka,Subhasis Chattopadhyay,H. F. Chen,J. H. Chen,J. Y. Chen,J. Cheng,M. Cherney,A. Chikanian,Ki-Seok Choi,W. Christie,S. U. Chung,R. F. Clarke,M. J. M. Codrington,J. P. Coffin,Thomas Michael Cormier,M. R. Cosentino,J. G. Cramer,H. J. Crawford,Debasish Das,S. Dash,M. S. Daugherity,C. De Silva,T. G. Dedovich,M. DePhillips,A. A. Derevschikov,R. Derradi de Souza,L. Didenko,P. Djawotho,S. M. Dogra,X. Dong,J. L. Drachenberg,J. E. Draper,F. Du,J. C. Dunlop,M. R. Dutta Mazumdar,W. R. Edwards,L. G. Efimov,E. Elhalhuli,M. Elnimr,V. Emelianov,J. Engelage,G. Eppley,B. Erazmus,M. Estienne,L. Eun,P. Fachini,R. Fatemi,J. Fedorisin,A. Feng,P. Filip,E. Finch,V. Fine,Y. Fisyak,C. A. Gagliardi,L. Gaillard,D. R. Gangadharan,M. S. Ganti,E. J. Garcia-Solis,V. Ghazikhanian,Premomoy Ghosh,Y. N. Gorbunov,A. Gordon,O. G. Grebenyuk,D. Grosnick,B. Grube,S. M. Guertin,K. S.F.F. Guimaraes,A. Gupta,Neeraj Gupta,W. Guryn,B. Haag,T. J. Hallman,A. Hamed,J. W. Harris,W. He,M. Heinz,S. Heppelmann,Boris Hippolyte,A. S. Hirsch,E. Hjort,A. M. Hoffman,Gerald W Hoffmann,David Jonathan Hofman,R. S. Hollis,H. Z. Huang,Thomas Humanic,G. Igo,A. Iordanova,Peter Martin Jacobs,W. W. Jacobs,Petr Jákl,Feng Jin,Peter Graham Jones,J. Joseph,E. G. Judd,S. Kabana,K. Kajimoto,K. Kang,J. Kapitan,Morton Kaplan,D. Keane,A. Kechechyan,D. Kettler,V. Yu Khodyrev,J. Kiryluk,Adam Ryszard Kisiel,S. R. Klein,A. G. Knospe,A. Kocoloski,D. D. Koetke,M. Kopytine,L. Kotchenda,V. Kouchpil,P. Kravtsov,V. I. Kravtsov,K. Krueger,M. Krus,Christian Claude Kuhn,Lokesh Kumar,P. Kurnadi,M. A.C. Lamont,J. M. Landgraf,S. LaPointe,J. Lauret,A. Lebedev,R. Lednicky,Chang-Hwan Lee,M. J. LeVine,C-Q. Li,Yan Li,G. Lin,X. Lin,S. J. Lindenbaum,M. A. Lisa,F. Liu,Hongfang Liu,Jie Liu,L. Liu,T. Ljubicic,W. J. Llope,R. S. Longacre,W. A. Love,Y. P. Lu,T. W. Ludlam,David Lynn,Guo-Liang Ma,Yu-Gang Ma,D. P. Mahapatra,R. D. Majka,O. I. Mall,L. K. Mangotra,R. Manweiler,S. Margetis,Christina Markert,H. S. Matis,Yu A. Matulenko,T. S. McShane,A. P. Meschanin,J. Millane,M. L. Miller,N. G. Minaev,S. Mioduszewski,Andre Mischke,J. Mitchell,Bedangadas Mohanty,L. Molnar,D. A. Morozov,Marcelo Gameiro Munhoz,Basanta Kumar Nandi,Christine Nattrass,T. K. Nayak,J. M. Nelson,C. Nepali,Pawan Kumar Netrakanti,M. J. Ng,L. V. Nogach,S. B. Nurushev,G. Odyniec,A. Ogawa,H. Okada,V. A. Okorokov,D. L. Olson,M. Pachr,B. S. Page,Subrata Pal,Y. Pandit,Y. Panebratsev,T. Pawlak,Thomas Peitzmann,V. Perevoztchikov,C. Perkins,W. Peryt,S. C. Phatak,Mirko Planinic,J. Pluta,Nikola Poljak,A. M. Poskanzer,B. V.K.S. Potukuchi,D. J. Prindle,Claude Andre Pruneau,N. K. Pruthi,Jorn Henning Putschke,Rashmi Raniwala,Sudhir Raniwala,R. L. Ray,Rolf K. Reed,A. Ridiger,H. G. Ritter,Jay Roberts,O. V. Rogachevskiy,J. L. Romero,Andrew Rose,C. Roy,Lijuan Ruan,M. J. Russcher,V. Rykov,Raghunath Sahoo,I. Sakrejda,T. Sakuma,Sevil Salur,J. Sandweiss,M. Sarsour,J. Schambach,R. P. Scharenberg,N. Schmitz,Janet Elizabeth Seger,I. Selyuzhenkov,P. Seyboth,A. Shabetai,E. Shahaliev,M. Shao,M. Sharma,S. S. Shi,X. H. Shi,E. P. Sichtermann,Frank Simon,Rama Narayana Singaraju,M. J. Skoby,Nikolai Smirnov,Raimond Snellings,P. Sorensen,J. Sowinski,H. M. Spinka,B. K. Srivastava,A. Stadnik,T. D. S. Stanislaus,D. Staszak,M. Strikhanov,B. Stringfellow,Alexandre Alarcon Do Passo Suaide,M. C. Suarez,N. L. Subba,Michal Sumbera,Xiangming Sun,Y. J. Sun,Z. J. Sun,Bernd Surrow,T. J. M. Symons,A. Szanto de Toledo,J. Takahashi,A. H. Tang,Zebo Tang,T. Tarnowsky,D. Thein,J. H. Thomas,Jifa Tian,Anthony R. Timmins,Sergey Timoshenko,D. Tlusty,M. Tokarev,V. N. Tram,A. L. Trattner,S. Trentalange,R. E. Tribble,O. D. Tsai,J. Ulery,T. Ullrich,D. G. Underwood,G. Van Buren,M. van Leeuwen,A. M. Vander Molen,J. A. Vanfossen,R. Varma,G. M.S. Vasconcelos,I. M. Vasilevski,Andrey Vasiliev,F. Videbæk,S. E. Vigdor,Y. P. Viyogi,S. Vokal,Sergei A. Voloshin,M. Wada,W. T. Waggoner,Fuqiang Wang,G. Wang,J. S. Wang,Q. Wang,Xuan Wang,X. L. Wang,Yanchu Wang,J. C. Webb,G. D. Westfall,C. A. Whitten,H. H. Wieman,S. W. Wissink,R. Witt,Yuanfang Wu,N. Xu,Q. H. Xu,Yong Xu,Z. Xu,P. Yepes,I. K. Yoo,Qian Yue,M. Zawisza,Hanna Paulina Zbroszczyk,W. Zhan,H. Zhang,S. Q. Zhang,W. M. Zhang,Y. Zhang,Zhenyu Zhang,Y. Zhao,C. Zhong,Jing Zhou,R. Zoulkarneev,Y. Zoulkarneeva,J. X. Zuo +370 more
TL;DR: In this article, the authors measured the charged-particle spectra at the BNL Relativistic Heavy Ion Collider (RHIC) time projection chamber and reported the average transverse momenta, total particle production, particle yield ratios, strangeness, and baryon production rates as a function of collision system and centrality.
Journal ArticleDOI
The STAR time projection chamber: a unique tool for studying high multiplicity events at RHIC
Matthew J. Anderson,J. Berkovitz,W. Betts,R. Bossingham,F. S. Bieser,Robert S. Brown,Morgan T. Burks,M. Calderon De La Barca Sanchez,D. Cebra,M. Cherney,J. T.M. Chrin,W. R. Edwards,V. Ghazikhanian,D.E. Greiner,M. L. Gilkes,D. Hardtke,G. C. Harper,E. Hjort,Hui Huang,G. Igo,S. Jacobson,D. Keane,S. R. Klein,G. Koehler,L. Kotchenda,B. Lasiuk,A. Lebedev,J. Lin,M. A. Lisa,H. S. Matis,Joakim Nystrand,Sergey Panitkin,D. Reichold,F. Retiere,I. Sakrejda,K. Schweda,D. Shuman,Raimond Snellings,N. Stone,N. Stone,B. Stringfellow,J. H. Thomas,Thomas A. Trainor,S. Trentalange,Russell Wells,C. A. Whitten,H. H. Wieman,E. Yamamoto,E. Yamamoto,W. M. Zhang +49 more
TL;DR: The STAR Time Projection Chamber (TPC) as discussed by the authors is used to record the collisions at the Relativistic Heavy Ion Collider (RHIC) and provides complete coverage around the beam-line, and complete tracking for charged particles within ± 1.8 units of pseudo-rapidity of the center of mass frame.
Journal ArticleDOI
Dual parton model
TL;DR: The dual parton model (DPM) as mentioned in this paper provides a complete, phenomenological description of all facets of soft processes and has been extensively studied and gradually extended over the past twelve years.
Journal ArticleDOI
The STAR Time Projection Chamber: A Unique Tool for Studying High Multiplicity Events at RHIC
Michael W. Anderson,J. Berkovitz,W. Betts,R. Bossingham,F. S. Bieser,R. M. Brown,M. Burkes,M. Calderon De La Barca Sanchez,D. Cebra,M. Cherney,J. T.M. Chrin,W. R. Edwards,V. Ghazikhanian,D.E. Greiner,M. L. Gilkes,D. Hardtke,G. C. Harper,E. Hjort,Heng Huang,G. Igo,S. Jacobson,D. Keane,S. R. Klein,G. Koehler,L. Kotchenda,B. Lasiuk,A. Lebedev,Jie Lin,M. A. Lisa,H. S. Matis,Joakim Nystrand,S. Y. Panitkin,D. Reichold,F. Retiere,I. Sakrejda,K. Schweda,D. Shuman,Raimond Snellings,N. T. B. Stone,B. Stringfellow,J. H. Thomas,Thomas A. Trainor,S. Trentalange,Russell Wells,C. A. Whitten,H. H. Wieman,E. Yamamoto,W. M. Zhang +47 more
TL;DR: The STAR Time Projection Chamber (TPC) as discussed by the authors is used to record collisions at the Relativistic Heavy Ion Collider (RHIC) and provides complete coverage around the beam-line, and complete tracking for charged particles within +- 1.8 units of pseudo-rapidity of the center of mass frame.
Journal ArticleDOI
Unitarity corrections to short-range order: Long-range rapidity correlations
A. Capella,A. Krzywicki +1 more
TL;DR: In this article, a thorough discussion of long-range rapidity correlations in high-multiplicity events is presented, and the normalized variance of the number n of exchanged cut Pomerons,, is most probably in the range 0.32 to 0.36.
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