Appropriate conditions to realize a $p$-wave superfluid state starting from a spin-orbit coupled $s$-wave superfluid Fermi gas
Abstract
We theoretically investigate a spin-orbit coupled -wave superfluid Fermi gas, to examine the time evolution of the system, after an -wave pairing interaction is replaced by a -wave one at . In our recent paper, we proposed that this manipulation may realize a -wave superfluid Fermi gas, because the -wave pair amplitude that is induced in the -wave superfluid state by a parity-broken antisymmetric spin-orbit interaction gives a non-vanishing -wave superfluid order parameter, immediately after the -wave interaction is turned on. In this paper, using a time-dependent Bogoliubov-de Gennes theory, we assess this idea under various conditions with respect to the -wave and -wave interaction strengths, as well as the spin-orbit coupling strength. From these, we clarify that the momentum distribution of Fermi atoms in the initial -wave state () is a key to produce a large -wave superfluid order parameter. Since the realization of a -wave superfluid state is one of the most exciting and difficult challenges in cold Fermi gas physics, our results may provide a possible way to accomplish this.
Keywords
Cite
@article{arxiv.1701.08255,
title = {Appropriate conditions to realize a $p$-wave superfluid state starting from a spin-orbit coupled $s$-wave superfluid Fermi gas},
author = {T. Yamaguchi and D. Inotani and Y. Ohashi},
journal= {arXiv preprint arXiv:1701.08255},
year = {2017}
}
Comments
27 pages, 8 figures