English

Dynamics of Hot QCD Matter -- Current Status and Developments

Nuclear Theory 2023-04-14 v1 High Energy Physics - Experiment High Energy Physics - Phenomenology High Energy Physics - Theory Nuclear Experiment

Abstract

The discovery and characterization of hot and dense QCD matter, known as Quark Gluon Plasma (QGP), remains the most international collaborative effort and synergy between theorists and experimentalists in modern nuclear physics to date. The experimentalists around the world not only collect an unprecedented amount of data in heavy-ion collisions, at Relativistic Heavy Ion Collider (RHIC), at Brookhaven National Laboratory (BNL) in New York, USA, and the Large Hadron Collider (LHC), at CERN in Geneva, Switzerland but also analyze these data to unravel the mystery of this new phase of matter that filled a few microseconds old universe, just after the Big Bang. In the meantime, advancements in theoretical works and computing capability extend our wisdom about the hot-dense QCD matter and its dynamics through mathematical equations. The exchange of ideas between experimentalists and theoreticians is crucial for the progress of our knowledge. The motivation of this first conference named "HOT QCD Matter 2022" is to bring the community together to have a discourse on this topic. In this article, there are 36 sections discussing various topics in the field of relativistic heavy-ion collisions and related phenomena that cover a snapshot of the current experimental observations and theoretical progress. This article begins with the theoretical overview of relativistic spin-hydrodynamics in the presence of the external magnetic field, followed by the Lattice QCD results on heavy quarks in QGP, and finally, it ends with an overview of experiment results.

Keywords

Cite

@article{arxiv.2208.13440,
  title  = {Dynamics of Hot QCD Matter -- Current Status and Developments},
  author = {Santosh K. Das and Prabhakar Palni and Jhuma Sannigrahi and Jan-e Alam and Cho Win Aung and Yoshini Bailung and Debjani Banerjee and Gergely Gábor Barnaföldi and Subash Chandra Behera and Partha Pratim Bhaduri and Samapan Bhadury and Rajesh Biswas and Pritam Chakraborty and Vinod Chandra and Prottoy Das and Sadhana Dash and Saumen Datta and Sudipan De and Vaishnavi Desai and Suman Deb and Debarshi Dey and Jayanta Dey and Sabyasachi Ghosh and Najmul Haque and Mujeeb Hasan and Amaresh Jaiswal and Sunil Jaiswal and Chitrasen Jena and Gowthama K K and Salman Ahamad Khan and Lokesh Kumar and Sumit Kumar Kundu and Manu Kurian and Neelkamal Mallick and Aditya Nath Mishra and Sukanya Mitra and Lakshmi J. Naik and Sonali Padhan and Ankit Kumar Panda and Pushpa Panday and Suvarna Patil and Binoy Krishna Patra and Pooja and Raghunath Pradhan and Girija Sankar Pradhan and Jai Prakash and Suraj Prasad and Prabhat R. Pujahari and Shubhalaxmi Rath and Sudhir Pandurang Rode and Ankhi Roy and Victor Roy and Marco Ruggieri and Rohan V S and Raghunath Sahoo and Nihar Ranjan Sahoo and Dushmanta Sahu and Nachiketa Sarkar and Sreemoyee Sarkar and Sarthak Satapathy and Captain R. Singh and V. Sreekanth and K. Sreelakshmi and Sumit and Dhananjaya Thakur and Sushanta Tripathy and Thandar Zaw Win},
  journal= {arXiv preprint arXiv:2208.13440},
  year   = {2023}
}

Comments

Compilation of the contributions (148 pages) as presented in the `Hot QCD Matter 2022 conference', held from May 12 to 14, 2022, jointly organized by IIT Goa & Goa University, Goa, India

R2 v1 2026-06-25T02:02:55.279Z