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We update our chemical analysis of (strange) hadrons produced at the SPS in Pb--Pb collisions at 158A GeV and and present a first chemical analysis of RHIC results. We report that the shape of (anti)hyperon m_T-spectra in a thermal…

Nuclear Theory · Physics 2014-11-18 Johann Rafelski , Jean Letessier , Giorgio Torrieri

The production and the observability of $\Lambda(1520)$, $K^0(892)$ $\Phi$ and $\Delta(1232)$ hadron resonances in central Pb+Pb collisions at 160 AGeV is addressed. The rescattering probabilities of the resonance decay products in the…

High Energy Physics - Phenomenology · Physics 2009-11-07 Marcus Bleicher , Jörg Aichelin

Hyperon resonances are becoming an extremely useful tool allowing the study of the properties of hadronic fireballs made in heavy ion collisions. Their yield, compared to stable particles with the same quark composition, depends on…

High Energy Physics - Phenomenology · Physics 2009-11-07 C. Markert , G. Torrieri , J. Rafelski

We study the production and the observability of Lambda*(1520), K*0(892), and Sigma*(1385), strange hadron resonances as function of the freeze-out conditions within the statistical model of hadron production. We obtain an estimate of how…

High Energy Physics - Phenomenology · Physics 2009-11-07 Giorgio Torrieri , Johann Rafelski

This dissertation examines the phenomenology of statistical hadronization at ultrarelativistic energies. We start with an overview of current experimental and theoretical issues in Relativistic heavy ion physics. We then introduce…

Nuclear Theory · Physics 2009-09-29 Giorgio Torrieri

We investigate chemical and thermal freeze-out time dependencies for strange particle production for CERN SPS heavy ion collisions in the framework of a dynamical hadronic transport code. We show that the Lambda yield changes considerably…

High Energy Physics - Phenomenology · Physics 2009-10-31 R. Bellwied , H. Caines , T. J. Humanic

An alternative, to the commonly used blast-wave, model describing the freeze-out hypersurface is applied to fit the $p_{T}$-spectra of identified hadrons measured at relativistic heavy-ion collisions at $\sqrt{s_{NN}}=62.4, 130$ and 200…

Nuclear Theory · Physics 2014-11-18 Dariusz Prorok

Recent data on hadron multiplicities in central Pb+Pb collisions at 158A GeV/c at mid-rapidity are analyzed within the concept of chemical freeze-out. A non-uniformity of the baryon chemical potential along the beam axis is taken into…

Nuclear Theory · Physics 2010-04-05 S. V. Akkelin , P. Braun-Munzinger , Yu. M. Sinyukov

We compare chemical and thermal analysis of the SPS Pb--Pb results at $158A$ GeV, and present a first chemical analysis of RHIC results. We show how a combined analysis of several strange hadron resonances can be used in a study of…

High Energy Physics - Phenomenology · Physics 2007-05-23 Johann Rafelski , Giorgio Torrieri , Jean Letessier

We present an elaborate version of the hadron resonance gas model with the combined treatment of separate chemical freeze-outs for strange and non-strange hadrons and with an additional $\gamma_{s}$ factor which accounts for the remaining…

We describe how the abundance and distribution of hyperon resonances can be used to probe freeze-out conditions. We demonstrate that resonance yields allow us to measure the time scales of chemical and thermal freeze-outs. This should…

High Energy Physics - Phenomenology · Physics 2008-11-26 G. Torrieri , J. Rafelski

The production and freeze-out conditions of strange particles, produced in Au+Au collisions at RHIC energies, are studied within microscopic transport model. The system of final particles can be represented as a core, containing the…

High Energy Physics - Phenomenology · Physics 2009-11-11 L. Bravina , K. Tywoniuk , E. Zabrodin

The Hadron Resonance Gas Model with two chemical freeze-outs, connected by conservation laws is considered. We are arguing that the chemical freeze-out of strange hadrons should occur earlier than the chemical freeze-out of non-strange…

High Energy Physics - Phenomenology · Physics 2014-11-21 D. R. Oliinychenko , V. V. Sagun , A. I. Ivanytskyi , K. A. Bugaev

After a brief survey of the remarkable accomplishments of the current heavy ion collision experiments up to 200A GeV, we address in depth the role of strange particle production in the search for new phases of matter in these collisions. In…

Nuclear Theory · Physics 2021-05-24 Johann Rafelski , Jean Letessier , Ahmed Tounsi

Multi-strange baryons are of particular interest in the understanding of particle production mechanisms, as their high strangeness content makes them susceptible to changes in the hadrochemistry of the colliding systems. In ALICE, these…

Nuclear Experiment · Physics 2019-08-13 Didier Alexandre

Recently reported transverse momentum distributions of strange hadrons produced in Pb(158AGeV) on Pb collisions and corresponding results from the relativistic quantum molecular dynamics (RQMD) approach are examined. We argue that the…

Nuclear Theory · Physics 2009-10-31 H. van Hecke , H. Sorge , N. Xu

We study, within the statistical hadronization model, the influence of narrow strangeness carrying baryon resonances (pentaquarks) on the understanding of particle production in relativistic heavy ion collisions. There is a great variation…

High Energy Physics - Phenomenology · Physics 2009-11-10 J. Letessier , G. Torrieri , S. Steinke , J. Rafelski

One surprising result in relativistic heavy-ion collisions is that the abundance of various particles measured in experiments is consistent with the picture that they reach chemical equilibrium at a temperature much higher than the…

Nuclear Theory · Physics 2017-07-06 Jun Xu , Che Ming Ko

We analyze hadrochemical freeze-out in central Pb+Pb collisions at CERN SPS and LHC energies. Employing the UrQMD hybrid transport model we study the effects of the final hadron/resonance expansion phase on the hadron multiplicities…

Nuclear Theory · Physics 2013-06-19 R. Stock , F. Becattini , M. Bleicher , T. Kollegger , T. Schuster , J. Steinheimer

We report the measurements of $\Sigma (1385)$ and $\Lambda (1520)$ production in $p+p$ and $Au+Au$ collisions at $\sqrt{s_{NN}} = 200$ GeV from the STAR collaboration. The yields and the $p_{T}$ spectra are presented and discussed in terms…

Nuclear Experiment · Physics 2010-07-27 The STAR collaboration , B. I. Abelev , M. M. Aggarwal , Z. Ahammed , J. Amonett , B. D. Anderson , M. Anderson , D. Arkhipkin , G. S. Averichev , Y. Bai , J. Balewski , O. Barannikova , L. S. Barnby , J. Baudot , S. Bekele , V. V. Belaga , A. Bellingeri-Laurikainen , R. Bellwied , F. Benedosso , S. Bhardwaj , A. Bhasin , A. K. Bhati , H. Bichsel , J. Bielcik , J. Bielcikova , L. C. Bland , S-L. Blyth , B. E. Bonner , M. Botje , J. Bouchet , A. V. Brandin , A. Bravar , T. P. Burton , M. Bystersky , R. V. Cadman , X. Z. Cai , H. Caines , M. Calderón de la Barca Sánchez , J. Castillo , O. Catu , D. Cebra , Z. Chajecki , P. Chaloupka , S. Chattopadhyay , H. F. Chen , J. H. Chen , J. Cheng , M. Cherney , A. Chikanian , W. Christie , J. P. Coffin , T. M. Cormier , M. R. Cosentino , J. G. Cramer , H. J. Crawford , D. Das , S. Das , S. Dash , M. Daugherity , M. M. de Moura , T. G. Dedovich , M. DePhillips , A. A. Derevschikov , L. Didenko , T. Dietel , P. Djawotho , S. M. Dogra , W. J. Dong , X. Dong , J. E. Draper , F. Du , V. B. Dunin , J. C. Dunlop , M. R. Dutta Mazumdar , V. Eckardt , W. R. Edwards , L. G. Efimov , V. Emelianov , J. Engelage , G. Eppley , B. Erazmus , M. Estienne , P. Fachini , R. Fatemi , J. Fedorisin , K. Filimonov , P. Filip , E. Finch , V. Fine , Y. Fisyak , J. Fu , C. A. Gagliardi , L. Gaillard , M. S. Ganti , L. Gaudichet , V. Ghazikhanian , P. Ghosh , J. E. Gonzalez , Y. G. Gorbunov , H. Gos , O. Grebenyuk , D. Grosnick , S. M. Guertin , K. S. F. F. Guimaraes , N. Gupta , T. D. Gutierrez , B. Haag , T. J. Hallman , A. Hamed , J. W. Harris , W. He , M. Heinz , T. W. Henry , S. Hepplemann , B. Hippolyte , A. Hirsch , E. Hjort , A. M. Hoffman , G. W. Hoffmann , M. J. Horner , H. Z. Huang , S. L. Huang , E. W. Hughes , T. J. Humanic , G. Igo , P. Jacobs , W. W. Jacobs , P. Jakl , F. Jia , H. Jiang , P. G. Jones , E. G. Judd , S. Kabana , K. Kang , J. Kapitan , M. Kaplan , D. Keane , A. Kechechyan , V. Yu. Khodyrev , B. C. Kim , J. Kiryluk , A. Kisiel , E. M. Kislov , S. R. Klein , A. Kocoloski , D. D. Koetke , T. Kollegger , M. Kopytine , L. Kotchenda , V. Kouchpil , K. L. Kowalik , M. Kramer , P. Kravtsov , V. I. Kravtsov , K. Krueger , C. Kuhn , A. I. Kulikov , A. Kumar , A. A. Kuznetsov , M. A. C. Lamont , J. M. Landgraf , S. Lange , S. LaPointe , F. Laue , J. Lauret , A. Lebedev , R. Lednicky , C-H. Lee , S. Lehocka , M. J. LeVine , C. Li , Q. Li , Y. Li , G. Lin , X. Lin , S. J. Lindenbaum , M. A. Lisa , F. Liu , H. Liu , J. Liu , L. Liu , Z. Liu , T. Ljubicic , W. J. Llope , H. Long , R. S. Longacre , W. A. Love , Y. Lu , T. Ludlam , D. Lynn , G. L. Ma , J. G. Ma , Y. G. Ma , D. Magestro , D. P. Mahapatra , R. Majka , L. K. Mangotra , R. Manweiler , S. Margetis , C. Markert , L. Martin , H. S. Matis , Yu. A. Matulenko , C. J. McClain , T. S. McShane , Yu. Melnick , A. Meschanin , J. Millane , M. L. Miller , N. G. Minaev , S. Mioduszewski , C. Mironov , A. Mischke , D. K. Mishra , J. Mitchell , B. Mohanty , L. Molnar , C. F. Moore , D. A. Morozov , M. G. Munhoz , B. K. Nandi , C. Nattrass , T. K. Nayak , J. M. Nelson , P. K. Netrakanti , L. V. Nogach , S. B. Nurushev , G. Odyniec , A. Ogawa , V. Okorokov , M. Oldenburg , D. Olson , M. Pachr , S. K. Pal , Y. Panebratsev , S. Y. Panitkin , A. I. Pavlinov , T. Pawlak , T. Peitzmann , V. Perevoztchikov , C. Perkins , W. Peryt , S. C. Phatak , R. Picha , M. Planinic , J. Pluta , N. Poljak , N. Porile , J. Porter , A. M. Poskanzer , M. Potekhin , E. Potrebenikova , B. V. K. S. Potukuchi , D. Prindle , C. Pruneau , J. Putschke , G. Rakness , R. Raniwala , S. Raniwala , R. L. Ray , S. V. Razin , J. Reinnarth , D. Relyea , F. Retiere , A. Ridiger , H. G. Ritter , J. B. Roberts , O. V. Rogachevskiy , J. L. Romero , A. Rose , C. Roy , L. Ruan , M. J. Russcher , R. Sahoo , T. Sakuma , S. Salur , J. Sandweiss , M. Sarsour , P. S. Sazhin , J. Schambach , R. P. Scharenberg , N. Schmitz , K. Schweda , J. Seger , I. Selyuzhenkov , P. Seyboth , A. Shabetai , E. Shahaliev , M. Shao , M. Sharma , W. Q. Shen , S. S. Shimanskiy , E Sichtermann , F. Simon , R. N. Singaraju , N. Smirnov , R. Snellings , G. Sood , P. Sorensen , J. Sowinski , J. Speltz , H. M. Spinka , B. Srivastava , A. Stadnik , T. D. S. Stanislaus , R. Stock , A. Stolpovsky , M. Strikhanov , B. Stringfellow , A. A. P. Suaide , E. Sugarbaker , M. Sumbera , Z. Sun , B. Surrow , M. Swanger , T. J. M. Symons , A. Szanto de Toledo , A. Tai , J. Takahashi , A. H. Tang , T. Tarnowsky , D. Thein , J. H. Thomas , A. R. Timmins , S. Timoshenko , M. Tokarev , T. A. Trainor , 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 , I. M. Vasilevski , A. N. Vasiliev , R. Vernet , S. E. Vigdor , Y. P. Viyogi , S. Vokal , S. A. Voloshin , W. T. Waggoner , F. Wang , G. Wang , J. S. Wang , X. L. Wang , Y. Wang , J. W. Watson , J. C. Webb , G. D. Westfall , A. Wetzler , C. Whitten , H. Wieman , S. W. Wissink , R. Witt , J. Wood , J. Wu , N. Xu , Q. H. Xu , Z. Xu , P. Yepes , I-K. Yoo , V. I. Yurevich , W. Zhan , H. Zhang , W. M. Zhang , Y. Zhang , Z. P. Zhang , Y. Zhao , C. Zhong , R. Zoulkarneev , Y. Zoulkarneeva , A. N. Zubarev , J. X. Zuo
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