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Using the coalescence model based on the phase-space distributions of protons, neutrons, Lambdas and their antiparticles from a multiphase transport (AMPT) model, we study the production of deuteron, triton, helium 3, hypertriton,…

Nuclear Theory · Physics 2016-01-20 Lilin Zhu , Che Ming Ko , Xuejiao Yin

We report results for $K/\pi$ fluctuations from Au+Au collisions at $\sqrt{s_{NN}}$ = 19.6, 62.4, 130, and 200 GeV using the STAR detector at the Relativistic Heavy Ion Collider. Our results for $K/\pi$ fluctuations in central collisions…

Nuclear Experiment · Physics 2009-09-02 B. I. Abelev

We studied the acceptance dependence of proton cumulants (up to fourth order) and correlation functions in 0--5\% most central Au+Au collisions at $\sqrt{s_\text{NN}}$=7.7, 11.5, 19.6, 27, 39, 62.4 and 200 GeV from UrQMD model. We found…

Nuclear Experiment · Physics 2017-11-21 Shu He , Xiaofeng Luo

We present measurements of net charge and transverse momentum fluctuations in Au + Au collisions at ?sNN = 20, 130, and 200 GeV reported in our QM 2004 poster using measures ?+-,dyn and <?pt,1 ?pt,2>. We observe the dynamical fluctuations…

Nuclear Experiment · Physics 2009-11-10 C. Pruneau

We explore the influence of deuteron formation in the late stage of nucleus-nucleus reactions on the fluctuations observed in the final net-proton yields around midrapidity. At each investigated energy, the produced (anti-)proton yield at…

Nuclear Theory · Physics 2015-12-23 Zuzana Feckova , Jan Steinheimer , Boris Tomasik , Marcus Bleicher

The yields and ratios of light nuclei in heavy-ion collisions offer a method to distinguish between the thermal and coalescence models. Ratios such as $\rm N_t \times N_p/N_d^2$ and $\rm N_{^3He} \times N_p/N_d^2$ are suggested as potential…

Nuclear Experiment · Physics 2024-12-03 Yixuan Jin

We present measurements of net charge fluctuations in $Au + Au$ collisions at $\sqrt{s_{NN}} = $ 19.6, 62.4, 130, and 200 GeV, $Cu + Cu$ collisions at $\sqrt{s_{NN}} = $ 62.4, 200 GeV, and $p + p$ collisions at $\sqrt{s} = $ 200 GeV using…

Nuclear Experiment · Physics 2009-03-04 B. I. Abelev , M. M. Aggarwal , Z. Ahammed , B. D. Anderson , D. Arkhipkin , G. S. Averichev , Y. Bai , J. Balewski , O. Barannikova , L. S. Barnby , J. Baudot , S. Baumgart , D. R. Beavis , R. Bellwied , F. Benedosso , R. R. Betts , S. Bhardwaj , A. Bhasin , A. K. Bhati , H. Bichsel , J. Bielcik , J. Bielcikova , B. Biritz , L. C. Bland , M. Bombara , B. E. Bonner , M. Botje , J. Bouchet , E. Braidot , A. V. Brandin , S. Bueltmann , T. P. Burton , M. Bystersky , X. Z. Cai , H. Caines , M. Calderón de la Barca Sánchez , J. Callner , O. Catu , D. Cebra , R. Cendejas , M. C. Cervantes , Z. Chajecki , P. Chaloupka , S. Chattopadhyay , H. F. Chen , J. H. Chen , J. Y. Chen , J. Cheng , M. Cherney , A. Chikanian , K. E. Choi , W. Christie , S. U. Chung , R. F. Clarke , M. J. M. Codrington , J. P. Coffin , T. M. Cormier , M. R. Cosentino , J. G. Cramer , H. J. Crawford , D. Das , S. Dash , M. Daugherity , 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. Garcia-Solis , V. Ghazikhanian , P. Ghosh , Y. N. Gorbunov , A. Gordon , O. Grebenyuk , D. Grosnick , B. Grube , S. M. Guertin , K. S. F. F. Guimaraes , A. Gupta , N. Gupta , W. Guryn , B. Haag , T. J. Hallman , A. Hamed , J. W. Harris , W. He , M. Heinz , S. Heppelmann , B. Hippolyte , A. Hirsch , A. M. Hoffman , G. W. Hoffmann , D. J. Hofman , R. S. Hollis , H. Z. Huang , T. J. Humanic , G. Igo , A. Iordanova , P. Jacobs , W. W. Jacobs , P. Jakl , F. Jin , P. G. Jones , E. G. Judd , S. Kabana , K. Kajimoto , K. Kang , J. Kapitan , M. Kaplan , D. Keane , A. Kechechyan , D. Kettler , V. Yu. Khodyrev , J. Kiryluk , A. 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 , C. Kuhn , L. Kumar , P. Kurnadi , M. A. C. Lamont , J. M. Landgraf , S. LaPointe , J. Lauret , A. Lebedev , R. Lednicky , C-H. Lee , M. J. LeVine , C. Li , Y. Li , G. Lin , X. Lin , S. J. Lindenbaum , M. A. Lisa , F. Liu , J. Liu , L. Liu , T. Ljubicic , W. J. Llope , R. S. Longacre , W. A. Love , Y. Lu , T. Ludlam , D. Lynn , G. L. Ma , Y. G. Ma , D. P. Mahapatra , R. Majka , L. K. Mangotra , R. Manweiler , S. Margetis , C. Markert , H. S. Matis , Yu. A. Matulenko , T. S. McShane , A. Meschanin , J. Millane , M. L. Miller , N. G. Minaev , S. Mioduszewski , A. Mischke , J. Mitchell , B. Mohanty , D. A. Morozov , M. G. Munhoz , B. K. Nandi , C. Nattrass , T. K. Nayak , J. M. Nelson , C. Nepali , P. K. Netrakanti , M. J. Ng , L. V. Nogach , S. B. Nurushev , G. Odyniec , A. Ogawa , H. Okada , V. Okorokov , D. Olson , M. Pachr , S. K. Pal , Y. Panebratsev , T. Pawlak , T. Peitzmann , V. Perevoztchikov , C. Perkins , W. Peryt , S. C. Phatak , M. Planinic , J. Pluta , N. Poljak , N. Porile , A. M. Poskanzer , B. V. K. S. Potukuchi , D. Prindle , C. Pruneau , N. K. Pruthi , J. Putschke , I. A. Qattan , R. Raniwala , S. Raniwala , R. L. Ray , A. Ridiger , H. G. Ritter , J. B. Roberts , O. V. Rogachevskiy , J. L. Romero , A. Rose , C. Roy , L. Ruan , M. J. Russcher , V. Rykov , R. Sahoo , I. Sakrejda , T. Sakuma , S. Salur , J. Sandweiss , M. Sarsour , J. Schambach , R. P. Scharenberg , N. Schmitz , J. Seger , I. Selyuzhenkov , P. Seyboth , A. Shabetai , E. Shahaliev , M. Shao , M. Sharma , S. S. Shi , X-H. Shi , E. P. Sichtermann , F. Simon , R. N. Singaraju , M. J. Skoby , N. Smirnov , R. Snellings , P. Sorensen , J. Sowinski , H. M. Spinka , B. Srivastava , A. Stadnik , T. D. S. Stanislaus , D. Staszak , M. Strikhanov , B. Stringfellow , A. A. P. Suaide , M. C. Suarez , N. L. Subba , M. Sumbera , X. M. Sun , Y. Sun , Z. Sun , B. Surrow , T. J. M. Symons , A. Szanto de Toledo , J. Takahashi , A. H. Tang , Z. Tang , T. Tarnowsky , D. Thein , J. H. Thomas , J. Tian , A. R. Timmins , S. Timoshenko , M. Tokarev , T. A. Trainor , V. N. Tram , A. L. Trattner , S. Trentalange , R. E. Tribble , O. D. Tsai , J. Ulery , T. Ullrich , D. G. Underwood , G. Van Buren , N. van der Kolk , M. van Leeuwen , A. M. Vander Molen , R. Varma , G. M. S. Vasconcelos , I. M. Vasilevski , A. N. Vasiliev , F. Videbaek , S. E. Vigdor , Y. P. Viyogi , S. Vokal , S. A. Voloshin , M. Wada , W. T. Waggoner , F. Wang , G. Wang , J. S. Wang , Q. Wang , X. Wang , X. L. Wang , Y. Wang , J. C. Webb , G. D. Westfall , C. Whitten , H. Wieman , S. W. Wissink , R. Witt , J. Wu , Y. Wu , N. Xu , Q. H. Xu , Y. Xu , Z. Xu , P. Yepes , I-K. Yoo , Q. Yue , M. Zawisza , H. Zbroszczyk , W. Zhan , H. Zhang , S. Zhang , W. M. Zhang , Y. Zhang , Z. P. Zhang , Y. Zhao , C. Zhong , J. Zhou , R. Zoulkarneev , Y. Zoulkarneeva , J. X. Zuo

Fluctuations of conserved quantities are sensitive observables to probe the signature of QCD phase transition and critical point in heavy-ion collisions. With the UrQMD model, we have studied the centrality and energy dependence of various…

Nuclear Experiment · Physics 2016-08-03 Ji Xu , Shili Yu , Feng Liu , Xiaofeng Luo

We present spectra of charged pions and protons in 0-10% central Au+Au collisions at $\sqrt{s_{NN}}=200$ GeV at mid-rapidity ($y=0$) and forward pseudorapidity ($\eta=2.2$) measured with the BRAHMS experiment at RHIC. The spectra are…

Nuclear Experiment · Physics 2008-11-26 I. Arsene et al.

We report on the rapidity and centrality dependence of proton and anti-proton transverse mass distributions from Au+Au collisions at sqrt(sNN) = 130GeV as measured by the STAR experiment at RHIC. Our results are from the rapidity and…

Nuclear Experiment · Physics 2008-11-26 J. Adams

We present the STAR preliminary results on mid-rapidity and low transverse momentum mean, standard deviation, skewness, and kurtosis of net-charge and net-proton distributions in Au+Au and Cu+Cu collisions at $\sqrt{s_{NN}}$ = 200 GeV for…

Nuclear Experiment · Physics 2019-08-13 Tapan K. Nayak

Experiment 910 has measured slow protons and deuterons from collisions of 18 GeV/c protons with Be, Cu, and Au targets at the BNL AGS. These correspond to the ``grey tracks'' first observed in emulsion experiments. We report on their…

Within a relativistic transport (ART) model for heavy-ion collisions, we show that the recently observed characteristic change from out-of-plane to in-plane elliptic flow of protons in mid-central Au+Au collisions as the incident energy…

Nuclear Theory · Physics 2009-10-31 Bao-An Li , C. M. Ko , Andrew T. Sustich , Bin Zhang

Higher-order cumulants of the net-baryon multiplicity distributions are predicted to be sensitive to the properties of the nuclear matter created in high-energy nuclear collisions. In this talk, we present the collision centrality and…

Nuclear Experiment · Physics 2021-02-03 Toshihiro Nonaka

We report the collision-centrality dependence of cumulants of event-by-event net-proton, net-charge and net-kaon distributions in Au+Au collisions for center-of-mass energy $\sqrt{s_{NN}}$ = 54.4 GeV from the STAR experiment. Strong…

Nuclear Experiment · Physics 2021-02-03 Ashish Pandav

We present results for the charged-particle multiplicity distribution at mid-rapidity in Au - Au collisions at sqrt(s_NN)=130 GeV measured with the PHENIX detector at RHIC. For the 5% most central collisions we find $dN_{ch}/d\eta_{|\eta=0}…

Nuclear Experiment · Physics 2008-11-26 PHENIX Collaboration , K. Adcox

The STAR experiment at the top RHIC energy has observed that the directed flow ($v_1$) of inclusive light hadrons is independent of the collision system size at a given centrality~\cite{STAR:2008jgm}. However, recent STAR measurements…

Nuclear Theory · Physics 2025-06-17 Muhammad Farhan Taseer , Subhash Singha

We present ratios of the numbers of charged antiparticles to particles (pions, kaons and protons) in Au + Au collisions at $\sqrt{s_{NN}}=200$ GeV as a function of rapidity in the range $y$=0-3. While the particle ratios at midrapidity are…

Nuclear Experiment · Physics 2019-08-21 I. G. Bearden

We demonstrate that proton and pion flow measurements in heavy-ion collisions at incident energies ranging from 1 to 20 GeV per nucleon in the fixed target frame can be used for an accurate determination of the symmetric nuclear matter…

Nuclear Theory · Physics 2023-09-26 Dmytro Oliinychenko , Agnieszka Sorensen , Volker Koch , Larry McLerran

The higher order moments of the net-baryon distributions in relativistic heavy ion collisions are useful probes for the QCD critical point and fluctuations. Within a simple model we study the colliding energy and centrality dependence of…

Nuclear Theory · Physics 2013-05-30 X. Wang , C. B. Yang
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