A Poincar\'e covariant cascade method for high-energy nuclear collisions
Abstract
We present a Poincar\'e covariant cascade algorithm based on the constrained Hamiltonian dynamics in an -dimensional phase space to simulate the Boltzmann-type two-body collision term. We compare this covariant cascade algorithm with traditional -dimensional phase-space cascade algorithms. To validate the covariant cascade algorithm, we perform box calculations. We examine the frame dependence of the algorithm in a one-dimensionally expanding system as well as the compression stages of colliding two nuclei. We confirm that our covariant cascade method is reliable to simulate high-energy nuclear collisions. Furthermore, we present Lorentz-covariant equations of motion for the -body system interacting via potentials, which can be efficiently solved numerically.
Keywords
Cite
@article{arxiv.2306.12131,
title = {A Poincar\'e covariant cascade method for high-energy nuclear collisions},
author = {Yasushi Nara and Asanosuke Jinno and Tomoyuki Maruyama and Koichi Murase and Akira Ohnishi},
journal= {arXiv preprint arXiv:2306.12131},
year = {2023}
}
Comments
13 pages, 10 figures, 1 table, typos fixed