Rotation induced color confinement

Fuente: arXiv
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Main Authors: Huang, Guojun, Chen, Shile, Jiang, Yin, Zhao, Jiaxing, Zhuang, Pengfei
Format: Preprint
Published: 2024
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author Huang, Guojun
Chen, Shile
Jiang, Yin
Zhao, Jiaxing
Zhuang, Pengfei
author_facet Huang, Guojun
Chen, Shile
Jiang, Yin
Zhao, Jiaxing
Zhuang, Pengfei
contents The rotation effect on the QCD properties is an open question. We study the dynamic gluon mass in a dense QCD matter, the rotation is introduced by taking a covariant transformation between the flat and curved spaces. The law of causality which restricts the rotation strength of the system is carefully considered in the calculation. we find that the rotation effect is not monotonous. Overall, it behaves like an anti-screening effect, reflecting in the decreasing gluon mass, but the strength changes with the rotation. For a QCD matter with low baryon density, the screening effect in the flat space can be completely canceled by the rotation, and gluons are confined in a strongly rotating matter. When the rotation is extremely high, the matter approaches to a weakly interacting gas.
format Preprint
id arxiv_https___arxiv_org_abs_2410_09108
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Rotation induced color confinement
Huang, Guojun
Chen, Shile
Jiang, Yin
Zhao, Jiaxing
Zhuang, Pengfei
High Energy Physics - Phenomenology
Nuclear Theory
The rotation effect on the QCD properties is an open question. We study the dynamic gluon mass in a dense QCD matter, the rotation is introduced by taking a covariant transformation between the flat and curved spaces. The law of causality which restricts the rotation strength of the system is carefully considered in the calculation. we find that the rotation effect is not monotonous. Overall, it behaves like an anti-screening effect, reflecting in the decreasing gluon mass, but the strength changes with the rotation. For a QCD matter with low baryon density, the screening effect in the flat space can be completely canceled by the rotation, and gluons are confined in a strongly rotating matter. When the rotation is extremely high, the matter approaches to a weakly interacting gas.
title Rotation induced color confinement
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2410.09108