论文标题

局部库仑相互作用对Majorana角模式的影响:弱和强相关极限

Effect of local Coulomb interaction on Majorana corner modes: weak and strong correlation limits

论文作者

Aksenov, S. V., Fedoseev, A. D., Shustin, M. S., Zlotnikov, A. O.

论文摘要

在这里,我们对Majorana角模式的演变进行了分析,该模式在局部库仑拒绝的影响下在平方晶格的高阶拓扑超导体(HOTSC)中意识到。在两个方案中考虑了HOTSC光谱特性:当多体相互作用的强度较弱或较强时。使用平均场近似值研究了弱政权,并考虑到有限的方形系统的边界,并在均匀的情况下进行了自洽解决方案。结果表明,在统一的情况下,相图上拓扑上的非平凡相通过库仑排斥而扩大。边界效应导致相关因子的不均匀空间分布,从而导致交叉出现从对称旋转无关的溶液到以自发损坏的对称性为特征的自旋依赖性溶液。在前者中,角状态的能量取决于激发波在不同角处的重叠。在后者中,角励能由二次定律的库仑排斥强度定义。交叉是有限的尺寸效应,即系统越大,库仑排斥的临界值越小。在强烈的排斥制度中,我们在原子代表中得出了有效的Hotsc Hamiltonian,并发现下层和上部哈伯德子带之间的虚拟过程引起了各种各样的相互作用。结果表明,Majorana角模式仍然可以在无限排斥的极限下实现。尽管哈伯德校正拓扑阶段的边界被强烈重新归一化。

Here we present an analysis of the evolution of Majorana corner modes realizing in a higher-order topological superconductor (HOTSC) on a square lattice under the influence of local Coulomb repulsion. The HOTSC spectral properties were considered in two regimes: when the intensities of many-body interactions are either weak or strong. The weak regime was studied using the mean-field approximation with self-consistent solutions carried out both in the uniform case and taking into account of the boundary of the finite square-shaped system. It is shown that in the uniform case the topologically nontrivial phase on the phase diagram is widened by the Coulomb repulsion. The boundary effect, resulting in an inhomogeneous spatial distribution of the correlators, leads to the appearance of the crossover from the symmetric spin-independent solution to the spin-dependent one characterized by a spontaneously broken symmetry. In the former the corner states have energies that are determined by the overlap of the excitation wave functions localized at the different corners. In the latter the corner excitation energy is defined by the Coulomb repulsion intensity with a quadratic law. The crossover is a finite size effect, i.e. the larger the system the lesser the critical value of the Coulomb repulsion. In the strong repulsion regime we derive the effective HOTSC Hamiltonian in the atomic representation and found a rich variety of interactions induced by virtual processes between the lower and upper Hubbard subbands. It is shown that Majorana corner modes still can be realized in the limit of the infinite repulsion. Although the boundaries of the topologically nontrivial phase are strongly renormalized by Hubbard corrections.

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