Spin alignment of $K^\ast$ induced by strange-baryon density inhomogeneity
Abstract
The difference between the spin alignments of and those of at the low collision energies is a puzzle raised by the recent experiments. Unlike meson, , carrying a unit strange charge, should react to strange chemical potential . In this paper, we shall first convince you that is not small in a brayon-rich medium for keeping strange neutrality, and then derive the spin alignment induced by the gradient of , and hence of baryon chemical potential , using linear response theory, with the transport coefficients expressed, without any approximation, in terms of the 's in-medium spectral properties by employing Ward-Takahashi identity. It turns out that such an effect applies mainly to the particles whose longitudinal and transverse modes diverge, and induces only the local spin alignment in a static medium. The magnitudes of these coefficients will be further estimated under the quasi-particle approximation.
Keywords
Cite
@article{arxiv.2404.02860,
title = {Spin alignment of $K^\ast$ induced by strange-baryon density inhomogeneity},
author = {Feng Li},
journal= {arXiv preprint arXiv:2404.02860},
year = {2024}
}
Comments
10 pages, 3 figures