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Related papers: Highlights from BNL and RHIC 2017

200 papers

The field of relativistic heavy-ion physics is reviewed with emphasis on new results and highlights from the first run of the Relativistic Heavy-Ion Collider at BNL and the 15 year research programme at the SPS at CERN and the AGS at BNL.

Nuclear Experiment · Physics 2009-11-07 Itzhak Tserruya

In high energy heavy ion collisions at the Relativistic Heavy Ion Collider (RHIC) at Brookhaven and the Large Hadron Collider (LHC) at CERN, each central event will contain multiple pairs of heavy quarks. if a region of deconfined quarks…

High Energy Physics - Phenomenology · Physics 2011-04-20 Robert L. Thews , Martin Schroedter , Johann Rafelski

Electron Ion Collider (EIC) is a particle accelerator facility planned for construction at Brookhaven National Laboratory on Long Island, New York by the United States Department of Energy. EIC will provide capabilities of colliding beams…

I review progress toward the experimental study of polarized proton collisions at RHIC, at center-of-mass energies of several hundred GeV. The tools under development for these experiments are summarized, with emphasis on the…

High Energy Physics - Experiment · Physics 2007-05-23 S. E. Vigdor

We review the physics of nuclear matter at high energy density and the experimental search for the Quark-Gluon Plasma at the Relativistic Heavy Ion Collider (RHIC). The data obtained in the first three years of the RHIC physics program…

High Energy Physics - Phenomenology · Physics 2009-11-10 Peter Jacobs , Xin-Nian Wang

Three empirical lines of evidence from RHIC have converged and point to the discovery of a strongly coupled Quark Gluon Plasma. The evidence includes (1) bulk collective elliptic flow and (2) jet quenching and mono-jet production, observed…

Nuclear Theory · Physics 2007-05-23 Miklos Gyulassy

This is an overview of the results from the first 3 years of RHIC experiments. RHIC is a collider built to accelerate nuclei to center of mass energies of 200 GeV per nucleon for the study of QCD in bulk systems. The most important result…

Nuclear Experiment · Physics 2010-11-30 Richard Seto

The HENP computing facility at Brookhaven National Laboratory supports both the Relativistic Heavy Ion Collider (RHIC) and US involvement in the ATLAS LHC experiment. The facility includes 150 TBytes of centralized online (disk) storage,…

Computational Physics · Physics 2007-05-23 Maurice Askinazi , David Free , Bruce Gibbard , Thomas Throwe

Recent experimental and theoretical developments have motivated interest in a more detailed exploration of heavy ion collisions in the range sqrt(sNN)=5-15 GeV. In contrast to interactions at the full RHIC energy of sqrt(sNN)=200 GeV, such…

Nuclear Experiment · Physics 2009-11-11 G S F Stephans

Strong magnetic fields are commonly generated in off-central relativistic heavy-ion collisions in the Relativistic Heavy Ion Collider (RHIC) at Brookhaven National Lab and in the Large Hadron Collider at CERN and have been used to probe the…

Nuclear Theory · Physics 2016-09-21 E. J. Ferrer , V. de la Incera

After 15 years of heavy-ion collision experiments at the AGS and SPS, the recent turn-on of RHIC has initiated a new stage of quark-gluon plasma studies. I review the evidence for deconfined quark-gluon matter at SPS energies and the recent…

High Energy Physics - Phenomenology · Physics 2009-10-09 Ulrich W. Heinz

Lattice QCD predicts a phase transition between hadronic matter and a system of deconfined quarks and gluons (the Quark Gluon Plasma) at high energy densities. Recent results from the Brookhaven Relativistic Heavy Ion Collider (RHIC)…

Nuclear Experiment · Physics 2007-05-23 Raimond Snellings

Lattice QCD predicts a phase transition between hadronic matter and a system of deconfined quarks and gluons (the Quark Gluon Plasma) at high energy densities. Recent results from the Brookhaven Relativistic Heavy Ion Collider (RHIC)…

High Energy Physics - Experiment · Physics 2007-05-23 Raimond Snellings

After close to 20 years of preparation, the dedicated heavy ion experiment ALICE took first data at the CERN LHC accelerator with proton collisions at the end of 2009 and with lead nuclei at the end of 2010. After a short introduction into…

High Energy Physics - Experiment · Physics 2019-08-13 J. Schukraft

The heavy ion (HI) program at the LHC has proven to be a successful and indispensable part of the LHC physics program. Its chief aim had been the detailed characterization of the quark-gluon plasma (QGP) in lead-lead collisions. Using…

Nuclear Experiment · Physics 2022-09-26 Georgios K. Krintiras , Andre G. Stahl Leiton

The hot and dense medium created at RHIC, called Quark and Gluon Plasma (QGP) has been a hot topic in the last ten years. Due to the high multiplicities in such heavy-ion collision events, particle correlations using either trigger…

Nuclear Experiment · Physics 2011-10-10 Hua Pei

The first collisions of lead nuclei, delivered by the CERN Large Hadron Collider (LHC) at the end of 2010, at a centre-of-mass energy per nucleon pair $\sqrt{s_{NN}}$ = 2.76 TeV, marked the beginning of a new era in ultra-relativistic…

High Energy Physics - Experiment · Physics 2017-02-24 Panagiota Foka , Malgorzata Anna Janik

In central collisions at relativistic heavy ion colliders like the Relativistic Heavy Ion Collider RHIC/Brookhaven and the Large Hadron Collider LHC (in its heavy ion mode) at CERN/Geneva, one aims at detecting a new form of hadronic matter…

High Energy Physics - Phenomenology · Physics 2008-11-26 Gerhard Baur , Kai Hencken , Dirk Trautmann

Extensive experimental data from high-energy nucleus-nucleus collisions were recorded using the PHENIX detector at the Relativistic Heavy Ion Collider (RHIC). The comprehensive set of measurements from the first three years of RHIC…

Nuclear Experiment · Physics 2009-09-29 PHENIX Collaboration , K. Adcox

This report is based on a ten-week program on "Gluons and the quark sea at high-energies", which took place at the Institute for Nuclear Theory in Seattle in Fall 2010. The principal aim of the program was to develop and sharpen the science…

Nuclear Theory · Physics 2015-03-19 D. Boer , M. Diehl , R. Milner , R. Venugopalan , W. Vogelsang , A. Accardi , E. Aschenauer , M. Burkardt , R. Ent , V. Guzey , D. Hasch , K. Kumar , M. A. C. Lamont , Y. Li , W. J. Marciano , C. Marquet , F. Sabatie , M. Stratmann , F. Yuan , S. Abeyratne , S. Ahmed , C. Aidala , S. Alekhin , M. Anselmino , H. Avakian , A. Bacchetta , J. Bartels , H. BC , J. Beebe-Wang , S. Belomestnykh , I. Ben-Zvi , G. Beuf , J. Blumlein , M . Blaskiewicz , A. Bogacz , S. J. Brodsky , T. Burton , R. Calaga , X. Chang , I. O. Cherednikov , P. Chevtsov , G. A. Chirilli , C. Ciofi degli Atti , I. C. Cloet , A. Cooper-Sarkar , R. Debbe , Ya. Derbenev , A. Deshpande , F. Dominguez , A. Dumitru , R. Dupre , B. Erdelyi , C. Faroughy , S. Fazio , A. Fedotov , J. R. Forshaw , R. Geraud , K. Gallmeister , L. Gamberg , J. -H. Gao , D. Gassner , F. Gelis , G. P. Gilfoyle , G. Goldstein , K. Golec-Biernat , V. P. Goncalves , M. Gonderinger , M. Guzzi , P. Hagler , H. Hahn , L. Hammons , Y. Hao , P. He , T. Horn , W. A. Horowitz , M. Huang , A. Hutton , B. Jager , W. Jackson , A. Jain , E. C. Johnson , Z. -B. Kang , L. P. Kaptari , D. Kayran , J. Kewisch , Y. Koike , A. Kondratenko , B. Z. Kopeliovich , Y. V. Kovchegov , G. Krafft , P. Kroll , S. Kumano , K. Kumericki , T. Lappi , T. Lautenschlager , R. Li , Z. -T. Liang , V. N. Litvinenko , S. Liuti , Y. Luo , D. Muller , G. Mahler , A. Majumder , S. Manikonda , F. Marhauser , G. McIntyre , M. Meskauskas , W. Meng , A. Metz , C. B. Mezzetti , G. A. Miller , M. Minty , S. -O. Moch , V. Morozov , U. Mosel , L. Motyka , H. Moutarde , P. J. Mulders , B. Musch , P. Nadel-Turonski , P. Nadolsky , F. Olness , P. N. Ostrumov , B. Parker , B. Pasquini , K. Passek-Kumericki , A. Pikin , F. Pilat , B. Pire , H. Pirner , C. Pisano , E. Pozdeyev , A. Prokudin , V. Ptitsyn , X. Qian , J. -W. Qiu , M. Radici , A. Radyushkin , T. Rao , R. Rimmer , F. Ringer , S. Riordan , T. Rogers , J. Rojo , T. Roser , R. Sandapen , R. Sassot , T. Satogata , H. Sayed , A. Schafer , G. Schnell , P. Schweitzer , B. Sheehy , J. Skaritka , G. Soyez , M. Spata , H. Spiesberger , A. M. Stasto , N. G. Stefanis , M. Strikman , M. Sullivan , L. Szymanowski , K. Tanaka , S. Taneja , S. Tepikian , B. Terzic , Y. Than , T. Toll , D. Trbojevic , E. Tsentalovich , N. Tsoupas , K. Tuchin , J. Tuozzolo , T. Ullrich , A. Vossen , S. Wallon , G. Wang , H. Wang , X. -N. Wang , S. Webb , C. Weiss , Q. Wu , B. -W. Xiao , W. Xu , B. Yunn , A. Zelenski , Y. Zhang , J. Zhou , P. Zurita
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