论文标题

超导拓扑绝缘子的夜间和手性状态的奇数对和异常接近效应

Odd-frequency pairs and anomalous proximity effect in nematic and chiral states of superconducting topological insulators

论文作者

Mizushima, Takeshi, Tamura, Shun, Yada, Keiji, Tanaka, Yukio

论文摘要

我们调查了超导拓扑绝缘子(stis)的夜间和手性状态的新兴奇数对和接近效应,例如$ M_X $ bi $ _2 $ _2 $ _2 $ se $ _3 $($ m = $ m = $ cu,sr,sr,nb)。超导间隙对称性,轨道自由度和强旋转轨道相互作用的相互作用会在Stis的整体和表面产生各种奇数对。列态和手性状态分别是拓扑超导体的原型,分别有或没有时间反转对称性。我们发现,费米表面从闭合球体到开放式圆柱形的演变会导致出现的奇数对和表面Andreev结合状态(SABSS)的演变。另外,奇数对和SABS的自旋极化源于手性状态的非单身配对。隧道电导光谱可以捕获奇数对和SABS的这些进化和自旋极化。此外,我们研究了性传播感染各种不可还原表示的异常接近效应。最初在没有自旋轨道相互作用的自旋三型超导体连接处预测异常的近端效应。奇数频率旋转$ s $ - 波对渗透到扩散的正常金属(DN)中,并诱导DN区域状态局部密度的明显零能量峰。在这里,我们证明了与众所周知的结果相反,性传播感染中的异常接近效应不能免疫非磁杂质。脆弱性归因于以下事实:由于父材料固有的强旋转轨道互动,近距离的奇数偶数偶数偶数对均为$ s $ - 波和非$ s $波对的混合物。

We investigate emergent odd-frequency pairs and proximity effect in nematic and chiral states of superconducting topological insulators (STIs), such as $M_x$Bi$_2$Se$_3$ ($M=$ Cu, Sr, Nb). The interplay of superconducting gap symmetry, the orbital degrees of freedom, and strong spin-orbit interaction generates a variety of odd-frequency pairs in the bulk and surface of STIs. The nematic and chiral states are the prototypes of topological superconductors with and without time-reversal symmetry, respectively. We find that the Fermi surface evolution from a closed spheroidal to an open cylindrical shape gives rise to the evolution of the emergent odd-frequency pairs and surface Andreev bound states (SABSs). In addition, spin polarization of odd-frequency pairs and SABSs stems from the non-unitary pairing in the chiral state. These evolution and spin polarization of odd-frequency pairs and SABSs can be captured by tunnel conductance spectroscopy. Furthermore, we study the anomalous proximity effect in various irreducible representations of STIs. The anomalous proximity effect is originally predicted in spin-triplet superconductor junctions without spin-orbit interaction; Odd-frequency spin-triplet $s$-wave pairs penetrate into diffusive normal metals (DN) and induce a pronounced zero-energy peak of the local density of states in the DN region. Here we demonstrate that contrary to the well-known results, the anomalous proximity effect in STIs is not immune to nonmagnetic impurities. The fragility is attributed to the fact that the proximitized odd-frequency even-parity pairs are admixtures of $s$-wave and non-$s$-wave pairs due to strong spin-orbit interaction inherent to the parent materials.

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