物理
拓扑序
拓扑绝缘体
拓扑简并
费米子
对称保护拓扑序
哈密顿量(控制论)
拓扑(电路)
齐次空间
配对
量子相
量子纠缠
迪拉克费米子
量子力学
量子
超导电性
量子相变
组合数学
数学优化
数学
几何学
作者
A. Montorsi,U. Bhattacharya,Daniel González-Cuadra,Maciej Lewenstein,Giandomenico Palumbo,Luca Barbiero
出处
期刊:Physical review
[American Physical Society]
日期:2022-12-30
卷期号:106 (24)
被引量:17
标识
DOI:10.1103/physrevb.106.l241115
摘要
Higher-order topological crystalline phases in low-dimensional interacting quantum systems represent a challenging and largely unexplored research topic. Here, we derive a Hamiltonian describing fermions interacting through correlated hopping processes that break chiral invariance, but preserve both inversion and time-reversal symmetries. In this way, we show that our one-dimensional model gives rise to an interacting second-order topological insulating phase that supports gapped edge states. The topological nature of such an interacting phase turns out to be revealed by both long-range order of a nonlocal string correlation function and by even degeneracy of the entanglement spectrum. For strong interactions we instead find that the topological crystalline phase is destroyed and replaced by a singlet superconducting phase. The latter, characterized by local fermionic pairing, turns out to appear both in a homogeneous and in a phase separated form. Relevantly, the derived one-dimensional model and the second-order topological insulator can be explored and investigated in atomic quantum simulators.
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