High Chern number topological superfluids and new class of topological phase transitions of Rashba spin-orbit coupled fermions on a lattice
Yu Yi-Xiang, Fadi Sun, Jinwu Ye, and Ningfang Song

TL;DR
This paper investigates a lattice system of fermions with spin-orbit coupling and Zeeman field, revealing a new class of topological phase transitions involving high Chern number superfluids, with detailed analysis of edge and vortex modes.
Contribution
It introduces a novel class of topological phase transitions in Rashba spin-orbit coupled fermions, including high Chern number superfluids and their edge and vortex properties.
Findings
Discovery of a $C=2$ topological superfluid phase at small Zeeman fields.
Identification of two new classes of topological phase transitions.
Analysis of Majorana edge modes and vortex zero modes in the $C=2$ TSF.
Abstract
Searching for the first topological superfluid (TSF) remains a primary goal of modern science. Here we study the system of attractively interacting fermions hopping in a square lattice with any linear combinations of Rashba or Dresselhaus spin-orbit coupling (SOC) in a normal Zeeman field. By imposing self-consistence equations at half filling, we find there are 3 phases: Band insulator ( BI ), Superfluid (SF) and Topological superfluid (TSF) with a Chern number . The TSF happens in small Zeeman fields and weak interactions which is in the experimentally most easily accessible regime. The transition from the BI to the SF is a first order one due to the multi-minima structure of the ground state energy landscape. There is a new class of topological phase transition from the SF to the TSF at the low critical field , then another one from the TSF to…
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