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arXiv:2411.10217·v2·High Energy Physics — Lattice

Aspects of the chiral crossover transition in (2+1)-flavor QCD with Möbius domain-wall fermions

Rajiv V. Gavai🇮🇳 · Mischa E. Jaensch🇩🇪 · Olaf Kaczmarek🇩🇪 · Frithjof Karsch🇩🇪 · Mugdha Sarkar🇹🇼 · Ravi Shanker🇮🇳 · Sayantan Sharma🇮🇳 · Sipaz Sharma🇩🇪 · Tristan Ueding🇩🇪

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Abstract

The non-singlet part of the chiral symmetry in QCD with two light flavors is known to be restored through a crossover transition at a pseudo-critical temperature. However, the temperature dependence of the singlet part of the chiral symmetry and whether it is effectively restored at the same temperature is not well understood. Using (2+1)-flavor QCD configurations generated using the Möbius domain-wall discretization on an lattice, we construct suitable observables where the singlet and non-singlet chiral symmetries are disentangled in order to study their temperature dependence across the crossover transition. From the peak of the disconnected part of the chiral susceptibility, we obtain a pseudo-critical temperature MeV where the non-singlet part of the chiral symmetry is effectively restored. From a calculation of the topological susceptibility and its temperature dependence we find that the singlet part of the chiral symmetry is not effectively restored at MeV.

Comments: 12 pages, 6 figures

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