Large $N_c$ behaviour of lattice QCD in the heavy dense regime

O. Philipsen, J. Scheunert
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引用次数: 1

Abstract

Combining strong coupling and hopping expansion one can derive a dimensionally reduced effective theory of lattice QCD. This theory has a reduced sign problem, is amenable to analytic evaluation and was successfully used to study the cold and dense regime of QCD for sufficiently heavy quarks. We show results from the evaluation of the effective theory for arbitrary $N_c$ up to $\kappa^4$. The inclusion of gauge corrections is also investigated. We find that the onset transition to finite baryon number density steepens with growing $N_c$ even for $T \neq 0$. This suggests that in the large $N_c$ limit the onset transition is first order up to the deconfinement transition. Beyond the onset, the pressure is shown to scale as $p \sim N_c$ through three orders in the hopping expansion, which is characteristic for a phase termed quarkyonic matter in the literature.
晶格QCD在重密区大$N_c$行为
结合强耦合和跳变展开,可以推导出晶格QCD的降维有效理论。该理论具有约简符号问题,适合于解析评价,并成功地用于研究足够重的夸克的冷态和稠密态QCD。我们展示了对任意$N_c$到$\kappa^4$的有效理论的评价结果。还研究了测量修正的包含。我们发现,即使对于$T \neq 0$,初始跃迁到有限重子数密度也随着$N_c$的增长而变陡。这表明,在大$N_c$极限下,起始跃迁是一阶的,直到去定义跃迁。在开始之后,压力在跳跃膨胀中显示为$p \sim N_c$通过三个阶,这是文献中称为夸克物质的相的特征。
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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