2023-11-23 06:53 |
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2023-11-22 04:18 |
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2023-11-21 06:08 |
Quark-gluon plasma evolution and hadronization
/ Colamaria, Fabio (INFN, Bari)
/ALICE Collaboration ; ATLAS Collaboration ; CMS Collaboration ; LHCb Collaboration
Due to the extremely large temperature and energy density reached in ultra-relativistic heavy-ion collisions, a hot and dense state of matter is produced, the quark-gluon plasma (QGP), in which quarks and gluons are deconfined. Due to these properties, this short-lived state shows a very different behaviour compared to ordinary hadronic matter. [...]
2023 - 10 p.
- Published in : PoS: LHCP2022 (2023) , pp. 016 - Published in : PoS: LHCP2022 (2023) , pp. 016
Fulltext: PDF;
In : 10th Annual Large Hadron Collider Physics (LHCP2022), Online, 16 - 20 May 2022, pp.016
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2023-11-20 10:21 |
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2023-11-16 08:50 |
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2023-11-16 08:50 |
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2023-11-14 07:32 |
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2023-11-14 07:32 |
Quark-gluon plasma properties
/ Krintiras, Georgios (Kansas U.)
/ALICE Collaboration ; ATLAS Collaboration ; CMS Collaboration ; LHCb Collaboration
Heavy ion collisions are used to study fundamental features of quantum chromodynamics (QCD) matter via its excitation to phases where quarks and gluons are no more confined into hadrons. Studies of the properties of this deconfined quark–gluon matter, called quark–gluon plasma (QGP), at the Brookhaven Relativistic Heavy-Ion Collider and the LHC have shown that the QGP behaves like a liquid with very small specific shear and bulk viscosities, and high opacity for energetic jets. [...]
2023 - 6 p.
- Published in : PoS: LHCP2022 (2023) , pp. 015 - Published in : PoS: LHCP2022 (2023) , pp. 015
Fulltext: PDF;
In : 10th Annual Large Hadron Collider Physics (LHCP2022), Online, 16 - 20 May 2022, pp.015
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2023-11-14 07:32 |
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2023-11-14 05:43 |
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