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首页> 外文期刊>Physical Review, A >From nodal-ring topological superfluids to spiral Majorana modes in cold atomic systems
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From nodal-ring topological superfluids to spiral Majorana modes in cold atomic systems

机译:从节点环拓扑超流中的冷原子系统中的螺旋MODAS

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摘要

In this work, we consider a three-dimensional (3D) cubic optical lattice composed of coupled 1D wires with 1D spin-orbit coupling. When the s-wave pairing is induced through Feshbach resonance, the system becomes a topological superfluid with ring nodes, which are the ring nodal degeneracies in the bulk, and supports a large number of surface Majorana zero-energy modes. The large number of surface Majorana modes remain at zero energy even in the presence of disorder due to the protection from a chiral symmetry. When the chiral symmetry is broken, the system becomes a Weyl topological superfluid with Majorana arcs. With 3D spin-orbit coupling, the Weyl superfluid becomes a gapless phase with spiral Majorana modes on the surface. A spatial-resolved radio-frequency spectroscopy is suggested to detect this nodal-ring topological superfluid phase.
机译:在这项工作中,我们考虑一种由具有1D自旋轨道耦合的耦合的1D线组成的三维(3D)立方光学晶格。 当通过Feshbach谐振引起S波配对时,系统成为具有环节点的拓扑超流体,其是体积中的环形节点变性,并且支持大量的表面Majorana零能量模式。 即使在对手术对称性的保护,大量表面MaxeAna模式也仍然处于零能量。 当手性对称性被打破时,系统成为Majorana弧的韦斯拓扑超流。 通过3D旋转轨道耦合,Weyl Superfluid通过表面上的螺旋Majorana模式变为无形相位。 建议存在空间分辨的射频光谱来检测该节点环拓扑超氟相。

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