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自旋轨道耦合费米子超流中的结构 Weyl 点。

Structured Weyl Points in Spin-Orbit Coupled Fermionic Superfluids.

机构信息

Department of Physics, University of Texas at Dallas, Richardson, Texas 75080, USA.

出版信息

Phys Rev Lett. 2015 Dec 31;115(26):265304. doi: 10.1103/PhysRevLett.115.265304. Epub 2015 Dec 30.

Abstract

We demonstrate that a Weyl point, widely examined in 3D Weyl semimetals and superfluids, can develop a pair of nondegenerate gapless spheres. Such a bouquet of two spheres is characterized by three distinct topological invariants of manifolds with full energy gaps, i.e., the Chern number of a 0D point inside one developed sphere, the winding number of a 1D loop around the original Weyl point, and the Chern number of a 2D surface enclosing the whole bouquet. We show that such structured Weyl points can be realized in the superfluid quasiparticle spectrum of a 3D degenerate Fermi gas subject to spin-orbit couplings and Zeeman fields, which supports Fulde-Ferrell superfluids as the ground state.

摘要

我们证明了在 3D 外尔半金属和超流体中广泛研究的外尔点可以产生一对非简并无带隙球体。这样的一对球体由具有全能隙的流形的三个不同拓扑不变量来描述,即一个展开球体内部的 0D 点的陈数、原始外尔点周围的 1D 环的缠绕数,以及整个花束的二维表面的陈数。我们表明,这种结构化的外尔点可以在自旋轨道耦合和塞曼场作用下的 3D 简并费米气体的超流准粒子谱中实现,其支持作为基态的完全弗勒利尔超流体。

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