首页> 外文期刊>The European physical journal, B. Condensed matter physics >Charge transport through ferromagnet/two-dimensional electron gas/d-wave superconductor junctions with Rashba spin-orbit coupling
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Charge transport through ferromagnet/two-dimensional electron gas/d-wave superconductor junctions with Rashba spin-orbit coupling

机译:通过Rashba自旋轨道耦合的铁磁体/二维电子气/ d波超导体结中的电荷传输

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摘要

Along the lines of Blonder, Tinkham and Klapwijk, we investigate the charge transport through ferromagnet/two-dimensional electronic gas/d-wave superconductor (F/2DEG/S) junctions in the presence of Rashba spin-orbit (SO) coupling and focus our attention on the interplay between spin polarization and spin precession. At zero spin polarization, the spin-mixing scattering resulted from Rashba SO coupling decreases the zero-bias conductance peak. Under spin polarization, spin precession introduces novel Andreev reflection, which competes with the effect of spin-mixing scattering. If the F layer is a half metal, the later effect is overwhelmed by that of novel Andreev reflection. As a result, the zero-bias conductance dip caused by spin polarization is enhanced, and at strong Rashba SO coupling, a split zero-bias peak is found in the gap. In an intermediate region where the two effects are comparable with each other, the zero-bias conductance shows a reentrant behavior as a function of Rashba SO coupling.
机译:沿着Blonder,Tinkham和Klapwijk的路线,我们研究了存在Rashba自旋轨道(SO)耦合和聚焦时通过铁磁体/二维电子气体/ d波超导体(F / 2DEG / S)结的电荷传输我们关注自旋极化和自旋进动之间的相互作用。在零自旋极化时,由Rashba SO耦合引起的自旋混合散射减小了零偏置电导峰。在自旋极化下,自旋进动引入了新颖的Andreev反射,可与自旋混合散射的效果竞争。如果F层是半金属,则后来的效果将被新颖的Andreev反射所抵消。结果,由自旋极化引起的零偏压电导下降得以增强,并且在强Rashba SO耦合下,在间隙中发现了分裂的零偏压峰。在两个效果彼此可比的中间区域,零偏置电导显示出可重入行为,与Rashba SO耦合有关。

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