论文标题
手性异常会诱导超导baryon晶体
Chiral anomaly induces superconducting baryon crystal
论文作者
论文摘要
先前在手性扰动理论中表明,在足够大的磁场和不变的情况下,QCD的基态,但不是太大,巴里恩化学势是一种所谓的手性孤子晶格。该观察结果的关键成分是韦斯 - 祖米诺诺(Wess-Zumino)术语形式的手性异常,该术语将重子化学电位与磁场和中性亲力场的梯度相结合。还表明,在较大的磁场下,手性孤子晶格对带电的pion凝结变得不稳定。我们指出,这种不稳定性与II型超导体的第二个临界磁场具有惊人的相似之处,但是,超导相在增加磁场时出现。所得阶段具有定期变化的带电式pion冷凝物,与中性锥形超电流并存。我们以手性极限进行分析构建此阶段,并表明它是能量优先的。就像普通的II型超导体一样,它表现出六角形的磁通管阵列,并且由于手性异常,在空间上振荡了相同的结晶结构的baryon数。
It was previously shown within chiral perturbation theory that the ground state of QCD in a sufficiently large magnetic field and at nonvanishing, but not too large, baryon chemical potential is a so-called chiral soliton lattice. The crucial ingredient of this observation was the chiral anomaly in the form of a Wess-Zumino-Witten term, which couples the baryon chemical potential to the magnetic field and the gradient of the neutral pion field. It was also shown that the chiral soliton lattice becomes unstable towards charged pion condensation at larger magnetic fields. We point out that this instability bears a striking resemblance to the second critical magnetic field of a type-II superconductor, however with the superconducting phase appearing upon increasing the magnetic field. The resulting phase has a periodically varying charged pion condensate that coexists with a neutral pion supercurrent. We construct this phase analytically in the chiral limit and show that it is energetically preferred. Just like an ordinary type-II superconductor, it exhibits a hexagonal array of magnetic flux tubes, and, due to the chiral anomaly, a spatially oscillating baryon number of the same crystalline structure.