Second-order relativistic dissipative spin hydrodynamics from kinetic theory

Not scheduled
20m
Dehan Hotel(德翰大酒店)

Dehan Hotel(德翰大酒店)

No 2 Jida Road, Xiangzhou district, Zhuhai
oral

Speaker

Dr Pushpa Panday (University of Science and Technology of China)

Description

During non-central ultra-relativistic heavy-ion collisions, the colliding nuclei carry a large global angular momentum. A part of this angular momentum is believed to be transferred to the quark-gluon plasma (QGP) medium leading to the spin polarization/alignment of the final state particles such as $\Lambda, K^{*}, \phi$. While the spin polarization of $\Lambda$ hyperons along global angular momenta has been explained through the consideration of thermal vorticity, the spin polarization in the longitudinal direction requires inclusion of shear induced polarization. We use the Chapman-Enskog-like expansion establishing a connection between spin tensor with the shear stress in the framework of second order spin hydrodynamics to ensure a causal formulation similarly to the M\"uller-Israel-Stewart theory.

Primary author

Dr Pushpa Panday (University of Science and Technology of China)

Co-authors

Dr Samapan Bhadury (IISER Berhampur) Prof. Sadhana Dash (IIT Bombay)

Presentation materials

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