Meson spin alignment and baryon polarization from coalescence with spin-vorticity non-equilibrium

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Hauptverfasser: Gonçalves, Kayman J., Torrieri, Giorgio, Ryblewski, Radoslaw
Format: Preprint
Veröffentlicht: 2024
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author Gonçalves, Kayman J.
Torrieri, Giorgio
Ryblewski, Radoslaw
author_facet Gonçalves, Kayman J.
Torrieri, Giorgio
Ryblewski, Radoslaw
contents We estimate both the polarization of spin $1/2$ baryons and the spin density matrix coefficients of spin $1$ mesons using a thermal model that incorporates vorticity and polarization to describe quarks, along with a coalescence formalism where spin and vorticity are not in equilibrium. We find that while our model is not predictive due to its considerable number of free parameters, it has the potential to explain several seemingly puzzling features of experimental spin measurements, such as the absence of baryon polarization alongside significant vector meson spin alignment. We suggest the measuring meson spin off-diagonal matrix elements, and examining the dependence of polarization observables on azimuthal angles, as methods to falsify this model and gain insights into the freezeout details of baryon and meson spin structure.
format Preprint
id arxiv_https___arxiv_org_abs_2410_16448
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Meson spin alignment and baryon polarization from coalescence with spin-vorticity non-equilibrium
Gonçalves, Kayman J.
Torrieri, Giorgio
Ryblewski, Radoslaw
High Energy Physics - Phenomenology
Nuclear Theory
We estimate both the polarization of spin $1/2$ baryons and the spin density matrix coefficients of spin $1$ mesons using a thermal model that incorporates vorticity and polarization to describe quarks, along with a coalescence formalism where spin and vorticity are not in equilibrium. We find that while our model is not predictive due to its considerable number of free parameters, it has the potential to explain several seemingly puzzling features of experimental spin measurements, such as the absence of baryon polarization alongside significant vector meson spin alignment. We suggest the measuring meson spin off-diagonal matrix elements, and examining the dependence of polarization observables on azimuthal angles, as methods to falsify this model and gain insights into the freezeout details of baryon and meson spin structure.
title Meson spin alignment and baryon polarization from coalescence with spin-vorticity non-equilibrium
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2410.16448