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Topological quantum phase transitions in the spin-singlet superconductor with Rashba and Dresselhaus (110) spin-orbit couplings

机译:具有Rashba和Dresselhaus(110)自旋轨道耦合的自旋单超导体中的拓扑量子相变

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We examine the topological properties of a spin-singlet superconductor with Rashba and Dresselhaus (110) spin-orbit couplings. We demonstrate that there are several topological invariants in the Bogoliubov-de Gennes (BdG) Hamiltonian by symmetry analysis. In particular, the Pfaffian invariant P for the particle-hole symmetry can be used to demonstrate all the possible phase diagrams of the BdG Hamiltonian. We find that the edge spectrum is either Dirac cone or flat band which supports the emergence of the Majorana fermion in this system. For the Majorana flat bands, an edge index, namely the Pfaffian invariant P(k_y) or the winding number W(k_y), is needed to make them topologically stable. These edge indices can also be used in determining the location of the Majorana flat bands.
机译:我们研究了具有Rashba和Dresselhaus(110)自旋轨道耦合的自旋超导体的拓扑特性。我们通过对称分析证明在Bogoliubov-de Gennes(BdG)哈密顿量中有几个拓扑不变量。特别地,用于粒子-孔对称性的Pfaffian不变量P可用于证明BdG哈密顿量的所有可能的相图。我们发现边缘光谱是狄拉克锥或平坦带,这支持了该系统中马约拉那费米子的出现。对于Majorana平坦带,需要一个边缘索引,即Pfaffian不变量P(k_y)或绕组数W(k_y),以使其拓扑稳定。这些边缘索引还可用于确定Majorana平坦频段的位置。

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