An Inhomogeneous Phase in Quark Matter without the Sign Problem

H. Kolešová
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Abstract

As shown recently, the ground state of quantum chromodynamics (QCD) in sufficiently strong magnetic fields and at moderate baryon densities carries a crystalline condensate of neutral pions: the chiral soliton lattice (CSL). This phase cannot be realized from first principles using standard latticeMonte Carlo simulations due to the infamous sign problem. On the other hand, we show that CSL, or a similar inhomogeneous phase, also appears in the phase diagram of a class of vector-like gauge theories that do not suffer from the sign problem even in the presence of a baryon chemical potential and external magnetic field. Hence, we give a class of explicit counterexamples to the long-standing conjecture that positivity of the determinant of the Dirac operator (that is, absence of the sign problem) in a vector-like gauge theory precludes spontaneous breaking of translational invariance, and thus implies the absence of inhomogeneous phases in the phase diagram of the theory.
没有符号问题的夸克物质中的非均匀相
正如最近所显示的,在足够强的磁场和中等重子密度下,量子色动力学(QCD)的基态携带中性介子的结晶凝聚态:手性孤子晶格(CSL)。由于臭名昭著的符号问题,这个阶段不能从使用标准格蒙特卡罗模拟的第一原理中实现。另一方面,我们证明了CSL或类似的非均匀相也出现在一类类矢量规范理论的相图中,即使在重子化学势和外部磁场存在的情况下,这些理论也不会受到符号问题的影响。因此,我们给出了一类明确的反例来证明长期存在的猜想,即在类向量规范理论中Dirac算子的行列式的正性(即符号问题的不存在)排除了平移不变性的自发破缺,从而暗示了在理论的相图中不存在非齐次相。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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