论文标题
非亚伯式费米化和量子厅阶段的景观
Non-Abelian Fermionization and the Landscape of Quantum Hall Phases
论文作者
论文摘要
最近在2+1个维度上提出了非阿贝尔玻色子 - 弗森二元双重性,在道德上将$ u(k)_n $与$ su(n)_ { - k} $ chern-simons-matter理论相关联,它提供了一个新的平台,提供了一个新的平台,用于探索非亚洲Quantum Hall Station从Abelian compories of Abelian of Abelian of Abelian的景观。在这里,我们关注的是二元性,将阿贝里亚量子厅的玻色子或费米子的理论与非亚伯“复合费米子”的理论有关,部分填充了兰道水平。我们表明,这些二元性预测了特殊的填充部分,在这些分数中,阿贝尔和非阿布尔复合效率理论似乎都可以托管不同的拓扑结构的基态,一个阿贝利安,另一个是非阿布莱恩,$ u(k)_2 _2 $ _2 $ blok-wen状态。我们认为这些结果表明,红外和最低的Landau级别限制在二元性方面未能通勤。在这种情况下,非阿布尔的拓扑顺序可以不稳定,而不是阿贝尔基层状态,这表明亚伯利亚人和非阿贝尔国家之间存在相过渡,这可能是一阶。在此过程中,我们还将这些结构推广到其他非亚伯式费米 - 特菲二元性二元性,以使用二元性(包括抗Pfaffian态)获得各种配对的复合式费米子阶段的新推导。最后,我们描述了在多层结构中,在$ n $层上复合费米子的激子配对还可以通过$ u(k)_2 $拓扑订单生成Blok-Wen状态的家族。
The recent proposal of non-Abelian boson-fermion dualities in 2+1 dimensions, which morally relate $U(k)_N$ to $SU(N)_{-k}$ Chern-Simons-matter theories, presents a new platform for exploring the landscape of non-Abelian quantum Hall states accessible from theories of Abelian composite particles. Here we focus on dualities relating theories of Abelian quantum Hall states of bosons or fermions to theories of non-Abelian "composite fermions" partially filling Landau levels. We show that these dualities predict special filling fractions where both Abelian and non-Abelian composite fermion theories appear capable of hosting distinct topologically ordered ground states, one Abelian and the other a non-Abelian, $U(k)_2$ Blok-Wen state. Rather than being in conflict with the duality, we argue that these results indicate unexpected dynamics in which the infrared and lowest Landau level limits fail to commute across the duality. In such a scenario, the non-Abelian topological order can be destabilized in favor of the Abelian ground state, suggesting the presence of a phase transition between the Abelian and non-Abelian states that is likely to be first order. We also generalize these constructions to other non-Abelian fermion-fermion dualities, in the process obtaining new derivations of a variety of paired composite fermion phases using duality, including the anti-Pfaffian state. Finally, we describe how, in multilayer constructions, excitonic pairing of the composite fermions across $N$ layers can also generate the family of Blok-Wen states with $U(k)_2$ topological order.