论文标题
QCD中的手性孤子晶格和Abrikosov Vortex Lattice的竞争与同源化学势
Competition of chiral soliton lattice and Abrikosov vortex lattice in QCD with isospin chemical potential
论文作者
论文摘要
我们研究了在非零的等体化学势和外部磁场的情况下,研究了两种夸克物质的热力学。众所周知,在足够高的同胞素化学势下,带电的乳头会经历玻色网凝结(BEC)。冷凝物作为超导体的表现,在弱外部磁场中表现出Meissner效应。更强大的田地强调超导状态,将其首先变成涡流的艾布里科索夫晶格,并最终完全破坏冷凝水。另一方面,对于足够强的磁场和低至中等的同胞化学电位,量子染色体动力学(QCD)的基态被预计是由心脏异常诱导的中性型的空间调节冷凝物:手术齿状晶状体(CSL)。我们将QCD的相图映射为Isospin化学电位和磁场的函数,在参数空间的一部分中,可访问QCD的低能量有效场理论描述。我们的主要结果是明确说明了CSL与Abrikosov Vortex晶格之间的竞争。这是通过采用快速数值算法来找到运动方程和相应Gibbs能量的涡旋晶格解决方案来完成的。我们发现,Abrikosov Vortex晶格相位在相图中持续存在,将均匀带电的Pion Bec相位与CSL相分开。相图的精确布局敏感地取决于真空纤维质量的选择。
We investigate the thermodynamics of two-flavor quark matter in presence of nonzero isospin chemical potential and external magnetic field. It is known that at sufficiently high isospin chemical potential, charged pions undergo Bose-Einstein condensation (BEC). The condensate behaves as a superconductor, exhibiting Meissner effect in weak external magnetic fields. Stronger fields stress the superconducting state, turning it first into an Abrikosov lattice of vortices, and eventually destroying the condensate altogether. On the other hand, for sufficiently strong magnetic fields and low-to-moderate isospin chemical potential, the ground state of quantum chromodynamics (QCD) is expected to be a spatially modulated condensate of neutral pions, induced by the chiral anomaly: the chiral soliton lattice (CSL). We map the phase diagram of QCD as a function of isospin chemical potential and magnetic field in the part of the parameter space accessible to a low-energy effective field theory description of QCD. Our main result is an explicit account of the competition between the CSL and the Abrikosov vortex lattice. This is accomplished by adopting a fast numerical algorithm for finding the vortex lattice solution of the equation of motion and the corresponding Gibbs energy. We find that the Abrikosov vortex lattice phase persists in the phase diagram, separating the uniform charged pion BEC phase from the CSL phase. The precise layout of the phase diagram depends sensitively on the choice of the vacuum pion mass.