arXiv:2608.13301·v1·High Energy Physics — Theory
Frame-dependency of the confinement temperature in a strongly-coupled plasma under rotation: a holographic description
Nelson R. F. Braga🇧🇷 · Alexsandre L. Ferreira Jr🇧🇷
Abstract
Recently, it was demonstrated that the disagreement between lattice calculations and holographic models, regarding rotational effects in the quark-gluon plasma (QGP), occurs due to different choices of reference frames. While a static observer measures a confinement temperature that decreases with rotation, one in a co-rotating frame finds the opposite behavior. Both results are correct, and a comprehension of the frame-dependency of the critical temperature is a significant step in the description of the QGP under rotation. In this article, we generalize this previous holographic result by describing the plasma through the most general Myers-Perry black hole solution. This breaks the spherical symmetry present in the equal angular momentum case, considered before. As a consequence, the local temperature measured by a co-rotating observer has a non-trivial angular dependence: it can decrease, increase or even behave non-monotonically when rotational velocity increases.
Comments: 24 pages, 6 figures. Comments are welcome!