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Related papers: Dense Gluon Matter in Nuclear Collisions

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I discuss recent results on the Color Glass Condensate which is a dense saturated gluonic state and appears as the universal picture of hadrons or nuclei at very high energies.

High Energy Physics - Phenomenology · Physics 2009-11-11 K. Itakura

The study of heavy-ion collisions presents a challenge to both theoretical and experimental nuclear physics. Due to the extremely short lifetime and small size of the collision system, disentangling information provided by experimental…

High Energy Physics - Phenomenology · Physics 2021-08-27 Derek Everett

Hard processes in high-energy proton-nucleus collisions are a powerful tool in order to investigate several importants aspects of QCD in a nuclear medium, such as nuclear shadowing, parton multiple scattering or medium-induced gluon…

High Energy Physics - Phenomenology · Physics 2016-12-26 François Arleo

We discuss recent progress towards developing accurate initial state descriptions for heavy ion collisions focusing on weak coupling based approaches, that enable one to constrain the high-energy structure of nuclei from deep inelastic…

Nuclear Theory · Physics 2023-12-14 Heikki Mäntysaari

We present a review of parton saturation/Color Glass Condensate physics in the context of deuteron-gold ($d+Au$) collisions at RHIC. Color Glass Condensate physics is a universal description of all high energy hadronic and nuclear…

High Energy Physics - Phenomenology · Physics 2011-01-25 Jamal Jalilian-Marian , Yuri V. Kovchegov

It was argued in arXiv:1805.09342 and arXiv:1807.00825 that the systematics of the azimuthal anisotropy coefficients $v_{2,3}$ measured in ultrarelativistic light-heavy ion collisions at RHIC and the LHC can be described in an initial state…

High Energy Physics - Phenomenology · Physics 2019-02-05 Mark Mace , Vladimir V. Skokov , Prithwish Tribedy , Raju Venugopalan

The Color Glass Condensate (CGC) effective theory and the collinear factorization at high-twist (HT) are two well-known frameworks describing perturbative QCD multiple scatterings in nuclear media. It has long been recognized that these two…

High Energy Physics - Phenomenology · Physics 2023-10-20 Yu Fu , Zhong-Bo Kang , Farid Salazar , Xin-Nian Wang , Hongxi Xing

The energy densities achieved during central collisions of large nuclei at the AGS may be high enough to allow the formation of quark--gluon plasma. We propose that most collisions at AGS energies produce superheated hadronic matter, but in…

Nuclear Theory · Physics 2007-05-23 A. P. Vischer

This lecture concerns the properties of strongly interacting matter (which is described by Quantum Chromodynamics) at very high energy density. I review the properties of matter at high temperature, discussing the deconfinement phase…

High Energy Physics - Phenomenology · Physics 2011-01-04 Larry McLerran

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

As it is well known by now, the pre-partonic phase in hadron collisions is successfully described by the Color Glass Condensate (CGC) approach. Previous studies, based on experimental data obtained on a wide range of energies at the…

High Energy Physics - Phenomenology · Physics 2021-11-17 A. Lindner , M. Petrovici , A. Pop

I argue that the physics of the scattering of very high energy strongly interacting particles is controlled by a new, universal form of matter, the Color Glass Condensate. This matter is the dominant contribution to the low x part of a…

High Energy Physics - Phenomenology · Physics 2009-04-22 Larry McLerran

This overview focusses on recent developments, in the most part triggered by LHC data, aimed at the development of a reliable and complete theoretical description of high-p$_t$ physics in heavy ion collisions. Particular emphasis is placed…

High Energy Physics - Phenomenology · Physics 2015-06-04 José Guilherme Milhano

High energetic particles traversing a dense medium lose a sizable part of their energy in form of gluon radiation. As a result, the rate of high-$p_t$ particles is expected to be suppressed in heavy ion collisions with respect to the proton…

High Energy Physics - Phenomenology · Physics 2007-05-23 C. A. Salgado

In the Color Glass Condensate (CGC) effective field theory, colliding sheets of Colored Glass form a strongly interacting, non-equilibrium state called the Glasma. How Colored Glass shatters to form the Glasma, the properties of the Glasma,…

High Energy Physics - Phenomenology · Physics 2008-11-26 Francois Gelis , Raju Venugopalan

According to the Color Glass Condensate approach to relativistic heavy-ion collisions, the earliest phase of the collision is a glasma which is made of highly populated gluon fields that can be treated classically. Using a proper time…

Nuclear Theory · Physics 2024-05-14 Margaret E. Carrington , Stanislaw Mrowczynski

The initial stages of relativistic heavy ion collisions are studied numerically in the framework of a 2+1 dimensional classical Yang-Mills theory. We calculate the energy and number densities and momentum spectra of the produced gluons. The…

High Energy Physics - Phenomenology · Physics 2009-11-10 T. Lappi

In the present paper, the current efforts in heavy-ion collisions toward high-density nuclear matter will be discussed. First, the essential points learned from RHIC and LHC will be reviewed. Then, the present data from the STAR Beam Energy…

Nuclear Experiment · Physics 2022-05-04 Shoji Nagamiya

We calculate the classical gluon field created at early times in collisions of large nuclei at high energies. We find that the field is dominated by the longitudinal chromoelectric and chromomagnetic components. We estimate the initial…

Nuclear Theory · Physics 2007-05-23 R. J. Fries , J. I. Kapusta , Y. Li

The initial energy density produced in an ultrarelativistic heavy ion collision can, in the color glass condensate framework, be factorized into a product of the integrated gluon distributions of the nuclei. Although this energy density is…

High Energy Physics - Phenomenology · Physics 2008-11-26 T. Lappi
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