论文标题

在磁性发作时自发形成特殊点

Spontaneous Formation of Exceptional Points at the Onset of Magnetism

论文作者

Crippa, Lorenzo, Sangiovanni, Giorgio, Budich, Jan Carl

论文摘要

我们揭示了如何通过在远距离顺序开始时通过对称性的波动来促进拓扑半学的对称性保护点。从高温磁磁相中进入铁磁状态时,这种新型非热(NH)拓扑的途径是用磁性NH Weyl相自发出现在强相关的三维拓扑绝缘子表面上的磁性NH Weyl相的例证。在这里,具有相反自旋的电子激发获得了显着不同的生命时光,从而引起了自旋中的抗三质结构,该结构与节点表面状态的手性自旋质地不相容,因此促进了EPS的自发形成。我们通过在动态均值场理论框架中非扰动地求解微观多波段模型来介绍这种现象的数值证据。

We reveal how symmetry protected nodal points in topological semimetals may be promoted to pairs of generically stable exceptional points (EPs) by symmetry-breaking fluctuations at the onset of long-range order. This novel route to non-Hermitian (NH) topology is exemplified by a magnetic NH Weyl phase spontaneously emerging at the surface of a strongly correlated three-dimensional topological insulator when entering the ferromagnetic regime from a high temperature paramagnetic phase. Here, electronic excitations with opposite spin acquire significantly different life-times, thus giving rise to an anti-Hermitian structure in spin that is incompatible with the chiral spin texture of the nodal surface states, and hence facilitates the spontaneous formation of EPs. We present numerical evidence of this phenomenon by solving a microscopic multi-band Hubbard model non-perturbatively in the framework of dynamical mean-field theory.

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