论文标题

Spin-1/2系统中的Bogoliubov Fermi表面:模型哈密顿量和实验后果

Bogoliubov Fermi Surfaces in Spin-1/2 Systems: Model Hamiltonians and Experimental Consequences

论文作者

Setty, Chandan, Cao, Yifu, Kreisel, Andreas, Bhattacharyya, Shinibali, Hirschfeld, P. J.

论文摘要

Bogoliubov Fermi表面(BFSS)是超导体中零能激发的拓扑保护区域,其尺寸等于基础正常状态Fermi表面的尺寸。众所周知,汉密尔顿人表现出这种“超强”阶段的例子可以保留电荷 - 偶联($ c $)和均等($ p $),但会破坏时间逆转($ t $)。在这项工作中,我们提供了模型汉密尔顿人的示例,这些模型不一定保留这种对称模式,但具有明确的签名pfaffians产生BFSS的示例。尽管以前尚未认识到它们的拓扑特征,但我们提出的一些模型在先前的文献中已经进行了广泛的研究。我们进一步研究了由超模态引起的热力学和电子特性。特别是,我们研究了接近拓扑转变的弱采地场的影响,并提出使用残留的特异性热和隧道电导来区分BFS的特征。我们对玩具多波段模型中超流体密度的计算表明了带间配对强度的窗口,其中BFS稳定,且呈阳性超级流体密度。我们还提出了BFS在自旋光光谱重量和总磁化测量中的其他签名。

Bogoliubov Fermi surfaces (BFSs) are topologically protected regions of zero energy excitations in a superconductor whose dimension equals that of the underlying normal state Fermi surface. Examples of Hamiltonians exhibiting this "ultranodal" phase are known to preserve charge-conjugation ($C$) and parity ($P$) but break time-reversal ($T$). In this work, we provide examples of model Hamiltonians that do not necessarily preserve this symmetry pattern but have well-defined sign-changing Pfaffians yielding BFSs. While their topological character has not been recognized previously, some of the models we present have been extensively studied in prior literature. We further examine thermodynamic and electronic properties arising from the ultranodal state. In particular, we study the effect of a weak Zeeman field close to the topological transition and propose distinguishing features of BFSs using residual specific heat and tunneling conductance. Our calculation of the superfluid density in a toy multi-band model indicates a window of interband pairing strength where BFSs are stable with a positive superfluid density. We also present additional signatures of BFSs in spin-polarized spectral weight and total magnetization measurements.

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