论文标题

奇数平价Bardasis-Schrieffer模式的线性光学响应在本地非中心超对象中

Linear optical response from the odd parity Bardasis-Schrieffer mode in locally non-centrosymmetric superconductors

论文作者

Lee, Changhee, Chung, Suk Bum

论文摘要

在最近的报道中,磁场引起的偶数超导性与奇怪的超导性之间的一阶转变,$ \ mathrm {cerh_ {2} as_ {2}} $,显微镜物理学仍在研究中。但是,如果在此过渡的附近,偶数和奇数配对通道的耦合强度是可比的,则称为Bardasis-Schrieffer(BS)模式的粒子粒子激素集体模式通常应在配对持续的下方存在。这种BS模式可以将其融入光线,从而影响超导体的光学响应,因为它来自与基态对相反的平均值的配对通道产生的。在这里,通过将通用双层模型哈密顿模型用于电子自由度,尽管每一层都是局部非中心对称性的,但它是全球中心对称性的,我们研究了BS模式的激发差距的变化相对于平面磁场,并证明其在局部响应方面都可以响应响应。线性耦合归因于多个电子带的存在,这是双层系统的通用特征。我们的结果表明,微波吸收是BS模式的特征,因此在两个超导阶段之间过渡时均等转换的吸烟枪标志。

On the recent report of a magnetic field induced first order transition between an even-parity superconductivity and an odd-parity superconductivity in $\mathrm{CeRh_{2}As_{2}}$, the microscopic physics is still under investigation. However, if, in the vicinity of this transition, the coupling strengths of the even and odd pairing channels are comparable, a particle-particle excitonic collective mode referred to as the Bardasis-Schrieffer (BS) mode should generically exist below the pair-breaking continuum. This BS mode can couple to the light and thus affect the optical response of the superconductor, as it arises from a pairing channel with the parity opposite to that of the ground state pairs. Here, by using a generic bilayer model Hamiltonian for the electronic degree of freedom, which is globally centrosymmetric despite each layer being locally non-centrosymmetric, we study the change of the excitation gap of the BS mode with respect to the out-of-plane magnetic fields and demonstrate that its coupling to the light is possible even in the linear response regime. The linear coupling is attributed to the presence of multiple electronic bands, which is a generic feature of a bilayer system. Our result shows the microwave absorption as the signature of the BS mode, and hence a smoking gun signature of the parity-switching at the transition between two superconducting phases.

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