arXiv · 2011.14245
Dynamical generation of solitons in one-dimensional Fermi superfluids with and without spin-orbit coupling
Abstract
We theoretically generalize a systematic language to describe the phase-imprinting technique to investigate the dynamical generation of solitons in a one-dimensional Raman-type spin-orbit-coupled Fermi superfluid. We check our method with the simulation of time-dependent Bogoliubov-de Gennes equations and find that our method not only can generate stable dark and even gray solitons in a conventional Fermi superfluid by controlling the transferred phase jump but also is feasible to create a stable dark soliton in both BCS and topological states of a spin-orbit-coupled Fermi superfluid. We also discuss the physical implication of our method.
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Lingchii Kong, Genwang Fan, Shi-Guo Peng, Xiao-Long Chen, Huaisong Zhao, Peng Zou. 2020-11-29. Dynamical generation of solitons in one-dimensional Fermi superfluids with and without spin-orbit coupling. https://doi.org/10.1103/physreva.103.063318
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