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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >On the Sarma-Type Phase Transitions in Ferromagnet/Superconductor/Ferromagnet Tunneling Junctions with Highly Spin-Polarized Ferromagnets
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On the Sarma-Type Phase Transitions in Ferromagnet/Superconductor/Ferromagnet Tunneling Junctions with Highly Spin-Polarized Ferromagnets

机译:高自旋极化铁磁体在铁磁体/超导体/铁磁体隧道结中的Sarma型相变

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摘要

In the ferromagnet/superconductor/ferromagnet double tunneling junctions, the spin-polarized tunneling current in the antiparallel alignment of the magnetization induces spin imbalance in the superconductor, which has a pair breaking effect depressing superconductivity in the same way that the Zeeman effect does in the paramagnetic limit. In particular, it is shown that when the ferromagnets are highly spin polarized, the strong spin imbalance may lead to a first-order phase transition from the superconducting phase to the normal phase at low temperature and low bias voltage. This phase transition accompanies a large discontinuous drop in superconducting gap parameter bring in distinctive features in low energy transport.
机译:在铁磁体/超导体/铁磁体双隧穿结中,自旋极化隧穿电流在磁化强度的反平行排列中会引起超导体中的自旋不平衡,这具有成对破坏效应,从而降低了超导性,就像塞曼效应在顺磁极限。特别地,示出了当铁磁体被高度自旋极化时,强自旋不平衡可能导致在低温和低偏置电压下从超导相到正常相的一阶相变。这种相变伴随着超导间隙参数的不连续大幅度下降,在低能输运中具有独特的特征。

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