Dynamic Strong Magnetic Field for Quark Gluon Plasma Equation of State

22 Sept 2021, 15:30
25m
Oral report Section 4. Relativistic nuclear physics, elementary particle physics and high-energy physics. Section 4. Relativistic nuclear physics, elementary particle physics and high-energy physics

Speaker

Dr Yogesh Kumar (Deshbandhu College, University of Delhi, india)

Description

We study the equation of state of quark gluon plasma (QGP) with dynamic strong and intense magnetic field. This magnetic field is expected to be generate due to the collisions of massive nuclei at relativistic heavy ion collider and large hadron collider. To get a deeper understanding of QGP physical picture, we use a quasi-particle model with various initial condition. The calculation results with quasi-particle model are found to be significant not only in the presence of static magnetic field but also provide significant contribution for dynamic magnetic field. We compare results with and without dynamic magnetic field. The results of QGP equation of state with dynamic magnetic field give deeper insights in QGP. Therefore, the current investigation of the QGP equation of state give unique insights into the development of heavy ion collisions, early universe and various other properties of quark matter under extreme conditions. The model work is thus useful for theoreticians and experimentalists to understand QGP better.

Primary author

Dr Yogesh Kumar (Deshbandhu College, University of Delhi, india)

Co-authors

Dr Poonam Jain (Sri Aurobindo College, University of Delhi) Mr Gaurang Kuksal (Deshbandhu College, University of Delhi) Mr Luv Kumar (Deshbandhu College, University of Delhi)

Presentation materials