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首页> 外文期刊>Physical Review X >Evidence for Time-Reversal Symmetry Breaking of the Superconducting State near Twin-Boundary Interfaces in FeSe Revealed by Scanning Tunneling Spectroscopy
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Evidence for Time-Reversal Symmetry Breaking of the Superconducting State near Twin-Boundary Interfaces in FeSe Revealed by Scanning Tunneling Spectroscopy

机译:扫描隧道光谱显示的FeSe中双边界界面附近的超导状态的时间反转对称性破裂的证据

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Junctions and interfaces consisting of unconventional superconductors provide an excellent experimental playground to study exotic phenomena related to the phase of the order parameter. Not only does the complex structure of unconventional order parameters have an impact on the Josephson effects, but it also may profoundly alter the quasiparticle excitation spectrum near a junction. Here, by using spectroscopic-imaging scanning tunneling microscopy, we visualize the spatial evolution of the LDOS near twin boundaries (TBs) of the nodal superconductor FeSe. The π / 2 rotation of the crystallographic orientation across the TB twists the structure of the unconventional order parameter, which may, in principle, bring about a zero-energy LDOS peak at the TB. The LDOS at the TB observed in our study, in contrast, does not exhibit any signature of a zero-energy peak, and an apparent gap amplitude remains finite all the way across the TB. The low-energy quasiparticle excitations associated with the gap nodes are affected by the TB over a distance more than an order of magnitude larger than the coherence length ξ a b . The modification of the low-energy states is even more prominent in the region between two neighboring TBs separated by a distance ≈ 7 ξ a b . In this region, the spectral weight near the Fermi level ( ≈ ± 0.2 meV ) due to the nodal quasiparticle spectrum is almost completely removed. These behaviors suggest that the TB induces a fully gapped state, invoking a possible twist of the order parameter structure, which breaks time-reversal symmetry.
机译:由非常规超导体组成的结和界面为研究与阶跃参数相位相关的外来现象提供了一个极好的实验场所。非常规有序参数的复杂结构不仅会影响约瑟夫森效应,而且还可能深刻改变结附近的准粒子激发光谱。在这里,通过使用光谱成像扫描隧道显微镜,我们可以看到节点超导体FeSe的孪生边界(TBs)附近LDOS的空间演化。 TB上晶体取向的π/ 2旋转扭曲了非常规有序参数的结构,从原理上讲,这可能会在TB处产生零能量的LDOS峰。相比之下,在我们的研究中观察到的TB处的LDOS没有显示出零能峰的任何特征,并且在整个TB处的表观间隙幅度一直是有限的。与间隙节点相关的低能准粒子激发受到TB的影响的距离大于相干长度ξa b的一个数量级。低能态的修改在两个相邻的TB之间的距离≈7ξab处更为明显。在该区域,由于节点准粒子光谱而导致的费米能级附近的光谱权重(≈±0.2 meV)几乎被完全去除。这些行为表明,TB诱导了一个完全空缺的状态,从而调用了顺序参数结构的可能扭曲,从而破坏了时间反转对称性。

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