Dynamics of QCD Matter -- current status
Amaresh Jaiswal, Najmul Haque, Aman Abhishek, Raktim Abir, Aritra, Bandyopadhyay, Khatiza Banu, Samapan Bhadury, Sumana Bhattacharyya, Trambak, Bhattacharyya, Deeptak Biswas, H. C. Chandola, Vinod Chandra, Bhaswar, Chatterjee, Chandrodoy Chattopadhyay, Nilanjan Chaudhuri

TL;DR
This paper reviews the current state of research in relativistic heavy-ion collisions, covering experimental results, magnetic field effects, QCD phase diagram, hydrodynamics, transport coefficients, and recent theoretical developments.
Contribution
It provides a comprehensive snapshot of recent experimental and theoretical advances across multiple topics in QCD matter and heavy-ion collision research.
Findings
Experimental light-flavor particle production data from ALICE.
Theoretical insights into magnetic field effects on QCD matter.
Development of modified coalescence models with viscous corrections.
Abstract
In this article, there are 18 sections discussing various current topics in the field of relativistic heavy-ion collisions and related phenomena, which will serve as a snapshot of the current state of the art. Section 1 reviews experimental results of some recent light-flavored particle production data from ALICE collaboration. Other sections are mostly theoretical in nature. Very strong but transient magnetic field created in relativistic heavy-ion collisions could have important observational consequences. This has generated a lot of theoretical activity in the last decade. Sections 2, 7, 9, 10 and 11 deal with the effects of the magnetic field on the properties of the QCD matter. There are several unanswered questions about the QCD phase diagram. Sections 3, 11 and 18 discuss various aspects of the QCD phase diagram and phase transitions. Recent years have witnessed interesting…
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