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Spin-triplet current in half metal/conical helimagnet/superconductor heterojunctions

机译:半金属/锥形螺旋磁铁/超导体异质结中的自旋三重态电流

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摘要

The BTK theory is extended to investigate spin-triplet current, differential conductance spectrum in the half metal/conical helimagnet (Holmium)/s-wave superconductor heterojunctions. We show that the effective spin-split, spin-flip scatterings of the Holmium layer control the conversion efficiency between the spin-singlet, equal-spin triplet pair correlations, leading to a tunneling current oscillation with the thickness of the Holmium layer. This can provide qualitative explanations on the current oscillation in Ho/Co/Ho-based Josephson junction experiment. The differential conductance spectrum confirms spin-flip Andreev reflection induced long-ranged equal-spin triplet pair correlations.
机译:扩展了BTK理论以研究自旋三重态电流,半金属/圆锥形螺旋磁铁(Ho)/ s波超导体异质结中的差分电导谱。我们表明Hol层的有效自旋分裂,自旋翻转散射控制着自旋单重,等自旋三重态对之间的转换效率,从而导致隧穿电流随with层的厚度而振荡。这可以为基于Ho / Co / Ho的Josephson结实验中的电流振荡提供定性解释。差分电导谱证实了自旋翻转Andreev反射引起的远程等自旋三重态对相关性。

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