论文标题
异常的临界值,有界的波动和远距离挫败感,损坏的时间反转对称性引起
Anomalous criticality with bounded fluctuations and long-range frustration induced by broken time-reversal symmetry
论文作者
论文摘要
我们考虑一个具有复杂光子跳振幅的一维dicke晶格,并研究了由于合成磁场而导致的时间反转对称性破坏的影响。我们表明,通过调整晶格的总通量螺纹,以周期性的边界条件进行晶格螺纹,超级相位转变(SPT)的通用类别从平均场完全连接的系统变为具有异常临界现象的通用性。尽管二阶相变是二阶相变,但异常的SPT在过渡的两侧表现出具有不同临界指数的闭合以及相关性和波动的不连续性。在异常的正常阶段中,我们发现出现了闭合能量差距和非相关波动和相关性的非均值临界指数,我们将其归因于不对称的分散关系。此外,我们表明,最近的邻里复合物会引起腔场的位置四元素的有效远程相互作用,后者的竞争会导致超级阶段之间的一系列一阶相变,其挫败感不同。所得的多政治点还显示出异常的特征,例如过渡两侧的两个共存的临界尺度。我们的工作表明,骨气晶格系统的损坏的时间反转对称性与挫败感之间的相互作用会导致异常的临界现象,这些现象在费米子,自旋或时间反向对称量子光学系统中没有对应。
We consider a one-dimensional Dicke lattice with complex photon hopping amplitudes and investigate the influence of time-reversal symmetry breaking due to synthetic magnetic fields. We show that, by tuning the total flux threading the lattice with a periodic boundary condition, the universality class of superradiant phase transition (SPT) changes from that of the mean-field fully connected systems to one that features anomalous critical phenomena. The anomalous SPT exhibits a closing of the energy gap with different critical exponents on both sides of transition and a discontinuity of correlations and fluctuation despite it being a second-order phase transition. In the anomalous normal phase, we find that a non-mean-field critical exponent for the closing energy gap and nondivergent fluctuations and correlations appear, which we attribute to the asymmetric dispersion relation. Moreover, we show that the nearest neighborhood complex hopping induces effective long-range interactions for position quadratures of the cavity fields, whose competition leads to a series of first-order phase transitions among superradiant phases with varying degrees of frustration. The resulting multicritical points also show anomalous features such as two coexisting critical scalings on both sides of the transition. Our work shows that the interplay between the broken time-reversal symmetry and frustration on bosonic lattice systems can give rise to anomalous critical phenomena that have no counterpart in fermionic, spin, or time-reversal symmetric quantum optical systems.