Phase- and temperature-driven chiral topological superfluids on a honeycomb lattice

Author:

Li Tong,Li Ning,Guo Miaodi,Wu Ya-JieORCID

Abstract

Abstract The correlated spinful Haldane model exhibits rich topological phases consisting of chiral topological superfluids (TSFs) and topological spin density waves. However, most of previous studies mainly focus on the case with the fixed hopping phase or at zero temperature. In this paper, we study the attractive spinful Haldane model with arbitrary phase at finite temperature. The chiral TSFs with Chern number C = 2 and 4 emerge driven by the phase and temperature. In particular, the temperature can drive a C = 2 topological superfluid from a trivial normal insulator phase at an appropriate interaction. The bulk topology of all TSFs is uncovered by the Wilson loop method, and confirmed by the responses of edge dislocations.

Funder

National Natural Science Foundation of China

2022 Shaanxi University Youth Innovation Team Project

Innovation Capability Support Program of Shaanxi

Scientific Research Program Funded by Natural Science Basic Research Plan in Shaanxi Province of China

Publisher

IOP Publishing

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