arXiv:1210.8427·v1·Nuclear Theory
Boltzmann equation with a nonlocal collision term and the resultant dissipative fluid dynamics
Amaresh Jaiswal🇮🇳 · Rajeev S. Bhalerao🇮🇳 · Subrata Pal🇮🇳
Abstract
Starting with the relativistic Boltzmann equation where the collision term was generalized to include gradients of the phase-space distribution function, we recently presented a new derivation of the equations for the relativistic dissipative fluid dynamics. We compared them with the corresponding equations obtained in the standard Israel-Stewart and related approaches. Our method generates all the second-order terms that are allowed by symmetry, some of which have been missed by the traditional approaches, and the coefficients of other terms are altered. The first-order or Navier-Stokes equation too receives a small correction. Here we outline this work for the general audience.
Comments: Invited talk given by Rajeev Bhalerao at Rencontres du Vietnam, International Conference on 'Heavy Ion Collisions in the LHC Era', 15-21 July 2012, Quy Nhon, Vietnam