首页> 外文期刊>Annals of Physics >Twofold spin-triplet pairing states and tunneling conductance in ferromagnet/ferromagnet/iron pnictide superconductor heterojunctions
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Twofold spin-triplet pairing states and tunneling conductance in ferromagnet/ferromagnet/iron pnictide superconductor heterojunctions

机译:铁磁体/铁磁体/磷化铁超导体异质结中的双重自旋三重态配对态和隧穿电导

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摘要

By applying an extended eight-component Bogoliubov-de Gennes equation, we study theoretically the tunneling conductance in clean ferromagnet/ferromagnet/iron pnictide superconductor (FM/FM/iron-based SC) heterojunctions. Under the condition of noncollinear magnetizations, twofold novel Andreev reflections exist due to the existence of two bands in the SC, in which the incident electron and the two Andreev-reflected holes, belonging to the same spin subband, form twofold spin-triplet pairing states near the FM/iron-based SC interface. It is shown that the conversions of the conductance not only between the zero-bias peak and valley at zero energy but also between the peaks and dips at two gap energies are strongly dependent on both the interband coupling strength in the SC and the spin polarization in the FM. The qualitative differences from tunneling into a conventional s-wave SC are also presented, which may help with experimentally probing and identifying the antiphase s-wave pairing symmetry in the iron-based SC.
机译:通过应用扩展的八分量Bogoliubov-de Gennes方程,我们从理论上研究了干净的铁磁体/铁磁体/磷化铁超导体(FM / FM /铁基SC)异质结中的隧穿电导。在非共线磁化的条件下,由于SC中存在两个能带,因此存在双重新颖的Andreev反射,其中入射电子和属于同一自旋子带的两个Andreev反射的空穴形成双重自旋三重态配对态。靠近FM /基于铁的SC接口。结果表明,电导率的转换不仅在零能量处的零偏峰和谷之间,而且在两个间隙能量处的峰和谷之间的电导转换都强烈依赖于SC中的带间耦合强度和自旋极化。 FM。还介绍了从隧道进入常规s波SC的质量差异,这可能有助于通过实验探测和识别铁基SC中的反相s波对对称性。

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