期刊论文详细信息
Ising anyons in frustration-free Majorana-dimer models
Article
关键词: QUANTUM HALL STATES;    TOPOLOGICAL PHASES;    LATTICE;    SUPERCONDUCTIVITY;    INSULATOR;   
DOI  :  10.1103/PhysRevB.94.115127
来源: SCIE
【 摘 要 】

Dimer models have long been a fruitful playground for understanding topological physics. Here, we introduce a class, termed Majorana-dimer models, wherein bosonic dimers are decorated with pairs of Majorana modes. We find that the simplest examples of such systems realize an intriguing, intrinsically fermionic phase of matter that can be viewed as the product of a chiral Ising theory, which hosts deconfined non-Abelian quasiparticles, and a topological p(x) - ip(y) superconductor. While the bulk anyons are described by a single copy of the Ising theory, the edge remains fully gapped. Consequently, this phase can arise in exactly solvable, frustration-free models. We describe two parent Hamiltonians: one generalizes the well-known dimer model on the triangular lattice, while the other is most naturally understood as a model of decorated fluctuating loops on a honeycomb lattice. Using modular transformations, we show that the ground-state manifold of the latter model unambiguously exhibits all properties of the Ising x (p(x) - ip(y)) theory. We also discuss generalizations with more than one Majorana mode per site, which realize phases related to Kitaev's 16-fold way in a similar fashion.

【 授权许可】

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