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2014, ISBN 9788184874075, x, 193 pages
Book
2005, Cambridge monographs on particle physics, nuclear physics, and cosmology, ISBN 9780521561082, Volume 23, xviii, 446
Book
2002, Cambridge monographs on particle physics, nuclear physics and cosmology, ISBN 9780521385367, Volume 18., xvi, 397
Before matter as we know it emerged, the universe was filled with the primordial state of hadronic matter called quark–gluon plasma. This hot soup of quarks... 
Hadrons | Quark-gluon plasma
Book
Book
International Journal of Modern Physics A, ISSN 0217-751X, 04/2013, Volume 28, Issue 11, p. 1340012
In this paper, we review recent progress toward understanding the nature of quarkonia in the quark gluon plasma. We review the theory necessary to understand... 
heavy ion collisions | Quarkonium | quark gluon plasma | J-PSI-SUPPRESSION | SCREENING MASSES | MOMENTUM | MESON SPECTRAL FUNCTIONS | PHYSICS, NUCLEAR | QCD SUM-RULES | CHARMONIUM | LATTICE QCD | NUCLEUS | HEAVY-ION COLLISIONS | FINITE-TEMPERATURE | PHYSICS, PARTICLES & FIELDS | Quarks | Collisions (Nuclear physics)
Journal Article
1985, Lecture notes in physics, ISBN 9783540152118, Volume 225, iv, 142
Book
1990, ISBN 9971509008, Volume 6., viii, 712
Book
Progress in Particle and Nuclear Physics, ISSN 0146-6410, 2009, Volume 62, Issue 1, pp. 48 - 101
This review covers our current understanding of strongly coupled Quark–Gluon Plasma (sQGP), especially theoretical progress in: (i) explaining the RHIC data by... 
AdS/CFT | Quark–gluon plasma | Heavy-ion collisions | Finite temperature QCD | Quark-gluon plasma | LATTICE GAUGE-THEORY | YANG-MILLS THEORY | WILSON LOOPS | FIELD-THEORIES | ENERGY-LOSS | PHYSICS, NUCLEAR | PNJL MODEL | QCD | NUCLEUS-NUCLEUS COLLISIONS | FINITE-TEMPERATURE | PHYSICS, PARTICLES & FIELDS | Collisions (Nuclear physics)
Journal Article
Physical Review Letters, ISSN 0031-9007, 05/2008, Volume 100, Issue 19, p. 192301
Journal Article
Nuclear Physics, Section A, ISSN 0375-9474, 2012, Volume 873, pp. 68 - 80
In ultra-relativistic heavy ion collisions, the matter formed shortly after the collision is a dense, out of equilibrium, system of gluons characterized by a... 
Heavy-ion collisions | Thermalization | Quark–gluon plasma | Quark-gluon plasma | PHYSICS, NUCLEAR | Anisotropy | Collisions (Nuclear physics)
Journal Article
Physics Letters B, ISSN 0370-2693, 07/2019, Volume 794, pp. 83 - 88
In this paper we study the in lattice QCD simulations at finite temperature. Results are obtained from the analysis of the gluonic defined topological charge... 
Nonzero temperature | Lattice QCD | Chiral symmetry | QCD topology | [formula omitted] meson | Quark gluon plasma
Journal Article
PHYSICAL REVIEW LETTERS, ISSN 0031-9007, 12/2006, Volume 97, Issue 23, p. 232301
We study J/psi production at RHIC and LHC energies with both initial production at energies reached and the BNL Relativistic Heavy Ion Collider (RHIC) and CERN... 
PSI' SUPPRESSION | PHYSICS, MULTIDISCIPLINARY | CHARMONIUM PRODUCTION | COALESCENCE | COLLABORATION | SPS | HEAVY-ION COLLISIONS | ANOMALOUS J/PSI | SYSTEMS | SHORT-DISTANCE ANALYSIS | Physics - Nuclear Theory | PHASE SPACE | TRANSPORT | DISTRIBUTION | REGENERATION | HYDRODYNAMICS | 73 | QUARK MATTER | PRODUCTION
Journal Article
by Aidala, C and Akiba, Y and Alfred, M and Andrieux, V and Aoki, K and Apadula, N and Asano, H and Ayuso, C and Azmoun, B and Babintsev, V and Bagoly, A and Bandara, N.S and Barish, K.N and Bathe, S and Bazilevsky, A and Beaumier, M and Belmont, R and Berdnikov, A and Berdnikov, Y and Blau, D.S and Boer, M and Bok, J.S and Brooks, M.L and Bryslawskyj, J and Bumazhnov, V and Butler, C and Campbell, S and Roman, V. Canoa and Cervantes, R and Chi, C.Y and Chiu, M and Choi, I.J and Choi, J.B and Citron, Z and Connors, M and Cronin, N and Csanád, M and Csörgő, T and Danley, T.W and Daugherity, M.S and David, G and DeBlasio, K and Dehmelt, K and Denisov, A and Deshpande, A and Desmond, E.J and Dion, A and Dixit, D and Liu, L.D and Do, J.H and Drees, A and Drees, K.A and Dumancic, M and Durham, J.M and Durum, A and Elder, T and Enokizono, A and En’yo, H and Esumi, S and Fadem, B and Fan, W and Feege, N and Fields, D.E and Finger, M and Finger, M and Fokin, S.L and Frantz, J.E and Franz, A and Frawley, A.D and Fukuda, Y and Gal, C and Gallus, P and Garg, P and Ge, H and Giordano, F and Goto, Y and Grau, N and Greene, S.V and Perdekamp, M. Grosse and Gunji, T and Guragain, H and Hachiya, T and Haggerty, J.S and Hahn, K.I and Hamagaki, H and Hamilton, H.F and Han, S.Y and Hanks, J and Hasegawa, S and Haseler, T.O.S and He, X and Hemmick, T.K and Hill, J.C and Hill, K and Hodges, A and Hollis, R.S and Homma, K and Hong, B and Hoshino, T and Hotvedt, N and ... and PHENIX Collaboration and Brookhaven National Lab. (BNL), Upton, NY (United States) and Lund University and Partikelfysik and Lunds universitet and Particle Physics
Nature Physics, ISSN 1745-2473, 03/2019, Volume 15, Issue 3, pp. 214 - 220
Journal Article