Higher-order topological superconductivity: possible realization in Fermi gases and Sr$_2$RuO$_4$
Abstract
We propose to realize second-order topological superconductivity in bilayer spin-polarized Fermi gas superfluids. We focus on systems with intralayer chiral -wave pairing and with tunable interlayer hopping and interlayer interactions. Under appropriate circumstances, an interlayer even-parity - or -wave pairing may coexist with the intralayer -wave. Our model supports localized Majorana zero modes not only at the corners of the system geometry, but also at the terminations of certain one-dimensional defects, such as lattice line defects and superfluid domain walls. We show how such topological phases and the Majorana zero modes therein can be manipulated in a multitude of ways by tuning the interlayer pairing and hopping. Generalized to spinful systems, we further propose that the putative -wave superconductor SrRuO, when subject to uniaxial strains, may also realize the desired topological phase.
Keywords
Cite
@article{arxiv.1811.01236,
title = {Higher-order topological superconductivity: possible realization in Fermi gases and Sr$_2$RuO$_4$},
author = {Zhigang Wu and Zhongbo Yan and Wen Huang},
journal= {arXiv preprint arXiv:1811.01236},
year = {2019}
}
Comments
14 pages and 7 figures, including supplemental material. Published version