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电子系统中的超辐射相变与涌现拓扑相

Superradiant Phase Transition in Electronic Systems and Emergent Topological Phases.

作者信息

Guerci Daniele, Simon Pascal, Mora Christophe

机构信息

Université de Paris, Laboratoire Matériaux et Phénomènes Quantiques, CNRS, F-75013 Paris, France.

Université Paris-Saclay, CNRS, Laboratoire de Physique des Solides, 91405 Orsay, France.

出版信息

Phys Rev Lett. 2020 Dec 18;125(25):257604. doi: 10.1103/PhysRevLett.125.257604.

Abstract

We derive a general criterion for determining the onset of superradiant phase transition in electronic bands coupled to a cavity field, with possibly electron-electron interactions. For longitudinal superradiance in 2D or genuine 1D systems, we prove that it is always prevented, thereby extending existing no-go theorems. Instead, a superradiant phase transition can occur to a nonuniform transverse cavity field and we give specific examples in noninteracting models, either through Fermi surface nesting or parabolic band touching. Investigating the resulting time-reversal symmetry breaking superradiant states, we find in the former case Fermi surface lifting down to four Dirac points on a square lattice model, with topologically protected zero modes, and in the latter case topological bands with nonzero Chern number on an hexagonal lattice.

摘要

我们推导了一个通用准则,用于确定与腔场耦合的电子能带中(可能存在电子 - 电子相互作用)超辐射相变的起始。对于二维或真正一维系统中的纵向超辐射,我们证明它总是被阻止的,从而扩展了现有的禁戒定理。相反,超辐射相变可以发生到非均匀横向腔场,并且我们在无相互作用模型中给出了具体例子,要么通过费米面嵌套,要么通过抛物线能带接触。研究由此产生的破时间反演对称性的超辐射态,我们发现在前一种情况下,在方形晶格模型上费米面下降到四个狄拉克点,具有拓扑保护的零模,而在后一种情况下,在六角晶格上具有非零陈数的拓扑能带。

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