论文标题

假想的isospin和Baryon化学势的轻型Roberge-Weiss Tricricition端点

The light Roberge-Weiss tricritical endpoint at imaginary isospin and baryon chemical potential

论文作者

Brandt, Bastian B., Chabane, Amine, Chelnokov, Volodymyr, Cuteri, Francesca, Endrődi, Gergely, Winterowd, Christopher

论文摘要

假想的化学电位是限制QCD相图并深入了解强相互作用物质的热力学的有用工具。在这项研究中,我们使用一环扰动理论报告了在高温下任意假想的巴属和同胞化学电位的相图,揭示了该平面中Roberge-Weiss(RW)相变的非平凡结构。随后,该系统通过$ n _ {\ rm f} = 2 $在RW相过渡的一系列温度下进行数值模拟。我们为光夸克质量建立了一个下限,其中一阶过渡线终止于三个智力点。已经发现,与纯粹的巴属假想化学潜力相比,这种三智力质量增加了,这表明我们的设置对于确定对手性极限的关键行为更有优势。最后,还研究了与RW相变相结合的局部Polyakov环簇的动力学。

Imaginary chemical potentials serve as a useful tool to constrain the QCD phase diagram and to gain insight into the thermodynamics of strongly interacting matter. In this study, we report on the first determination of the phase diagram for arbitrary imaginary baryon and isospin chemical potentials at high temperature using one-loop perturbation theory, revealing a nontrivial structure of Roberge-Weiss (RW) phase transitions in this plane. Subsequently, this system is simulated numerically with $N_{\rm f}=2$ unimproved staggered quarks on $N_τ=4$ lattices at a range of temperatures at one of the RW phase transitions. We establish a lower bound for the light quark mass, where the first-order transition line terminates in a tricritical point. It is found that this tricritical mass is increased as compared to the case of purely baryonic imaginary chemical potentials, indicating that our setup is more advantageous for identifying critical behavior towards the chiral limit. Finally, the dynamics of local Polyakov loop clusters is also studied in conjuction with the RW phase transition.

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