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首页> 外文期刊>Journal of Physics. Condensed Matter >Bound fermion states in pinned vortices in the surface states of a superconducting topological insulator
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Bound fermion states in pinned vortices in the surface states of a superconducting topological insulator

机译:在超导拓扑绝缘体的表面状态中绑定的FERMION状态在固定涡流中

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摘要

By analytically solving the Bogoliubov-de Gennes equations we study the fermion bound states at the center of the core of a vortex in a two-dimensional superconductor. The superconducting states are induced via proximity effect between an s-wave superconductor and the surface states of a strong topological insulator. The strong spin-orbit coupling locks the spin perpendicular to the momentum (Rashba interaction). A zero-energy Majorana state arises together with an equally spaced (Delta(2)(infinity)/E-F) sequence of fermion excitations. The spin-momentum locking is key to the formation of the Majorana state. We present analytical expressions for the energy spectrum and the wave functions of the bound states. The wave functions fall off exponentially with the distance rho from the core of the vortex as exp[-integral(rho)(0)d rho 'Delta(rho ')/v(F)]. An analytic expression for the local density of states (LDOS) for the bound states is obtained. The particle-hole symmetry is broken in the LDOS as a consequence of the spin-orbit coupling. The spin-polarization of the bound states is discussed. We also obtain the energy shifts of the bound states in a small magnetic field. A unitary transformation relating the model with Rashba interaction to the Dirac Hamiltonian is presented.
机译:通过解析求解Bogoliubov-de-Gennes方程,我们研究了二维超导体中涡旋中心的费米子束缚态。超导态是通过s波超导体和强拓扑绝缘体表面态之间的邻近效应产生的。强自旋-轨道耦合将自旋锁定在与动量垂直的位置(Rashba相互作用)。零能量马约拉纳态与等距(δ(2)(无穷大)/E-F)费米子激发序列一起出现。自旋动量锁定是马约拉纳态形成的关键。我们给出了束缚态的能谱和波函数的解析表达式。波函数随距涡核的距离rho呈指数衰减,即exp[-积分(rho)(0)dρ'δ(rho')/v(F)]。得到了束缚态局域态密度的解析表达式。由于自旋-轨道耦合,LDO中的粒子-空穴对称性被破坏。讨论了束缚态的自旋极化。我们还得到了束缚态在小磁场中的能量位移。提出了一种将拉什巴相互作用模型与狄拉克哈密顿量联系起来的幺正变换。

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