论文标题

密集QC $ _2 $ D的热力学特性的晶格研究

Lattice study of thermodynamic properties of dense QC$_2$D

论文作者

Astrakhantsev, N., Braguta, V. V., Ilgenfritz, E. -M., Kotov, A. Yu., Nikolaev, A. A.

论文摘要

在本文中,我们研究了晶格模拟中致密冷$ su(2)$ qCD的热力学特性,并具有动态的扎根交错夸克,在连续限制中对应于$ n_f = 2 $ quark味道。我们计算了该区域的各种重子化学电位的重子密度,重新归一化的手性和diquark冷凝物$ \ in(0,\,2000年)$ MEV。可以发现,在(0,\,540)$ MEV中,在该区域中,该系统由智商预测很好地描述。在该地区,$μ> 540 $ MEV系统变得足够密集,CHPT不再适用于描述晶格数据。对于化学势$μ> 900 $ meV,我们观察到了费米球体的形成,并且该系统与Bardeen-Cooper-Schrieffer理论所描述的系统相似,其中diquarks扮演了库珀对的角色。为了研究非零的baryon密度如何影响Gluon背景,我们计算染色体和铬磁场以及拓扑敏感性。我们发现,染色场和拓扑敏感性降低,而铬磁场随着重骨化学势的增加而增加。最后,我们研究了密集的两色夸克物质的方程。

In this paper we study thermodynamic properties of dense cold $SU(2)$ QCD within lattice simulation with dynamical rooted staggered quarks which in the continuum limit correspond to $N_f=2$ quark flavours. We calculate baryon density, renormalized chiral and diquark condensates for various baryon chemical potentials in the region $μ\in (0,\,2000)$ MeV. It is found, that in the region $μ\in (0,\,540)$ MeV the system is well described by the ChPT predictions. In the region $μ> 540$ MeV the system becomes sufficiently dense and ChPT is no longer applicable to describe lattice data. For chemical potentials $μ> 900$ MeV we observe formation of the Fermi sphere, and the system is similar to the one described by the Bardeen-Cooper-Schrieffer theory where the the diquarks play a role of Cooper pairs. In order to study how nonzero baryon density influences the gluon background we calculate chromoelectric and chromomagnetic fields, as well as the topological susceptibility. We find that the chromoelectric field and the topological susceptibility decrease, whereas the chromomagnetic field increases with rising of baryon chemical potential. Finally we study the equation of state of dense two-color quark matter.

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