Institute of Solid State Physics, Chernogolovka, Moscow reg., 142432 Russia.
Phys Rev Lett. 2012 May 11;108(19):197002. doi: 10.1103/PhysRevLett.108.197002. Epub 2012 May 8.
By now it is known that in a singlet superconductor-ferromagnet (S-F) structure the superconducting correlations carried by opposite-spin pairs penetrate into the ferromagnet over a short distance of the order of magnetic coherence length. The long-range proximity effect (LRPE), taking place on the length scale of the normal metal coherence length, can only be maintained by equal-spin pairs, which can be generated by magnetic inhomogeneities in the system. In this Letter, we have predicted a new type of LRPE, which can take place in S-F heterostructures under nonequilibrium conditions. The superconducting correlations in the F region are generated by opposite-spin Cooper pairs and equal-spin pairs are not involved. The possibility for an opposite-spin pair to penetrate into the ferromagnet over a large distance is provided by creation of the proper nonequilibrium quasiparticle distribution there. This leads to a sharp increase (up to a few orders of magnitude) of the critical Josephson current through a S-F-S junction at some values of the voltage controlling the nonequilibrium distribution in the F interlayer.
到目前为止,人们已经知道在单重态超导-铁磁(S-F)结构中,由相反自旋对携带的超导相关性会在短距离内穿透铁磁体,这个距离大约为磁相干长度。长程近邻效应(LRPE)只能在等自旋对的范围内维持,而这些等自旋对可以通过系统中的磁不均匀性产生。在这封信中,我们预测了一种新的 LRPE,它可以在非平衡条件下的 S-F 异质结构中发生。F 区的超导相关性是由相反自旋的库珀对产生的,而不涉及等自旋对。通过在 F 层中创建适当的非平衡准粒子分布,可以为相反自旋对穿透铁磁体提供远距离穿透的可能性。这导致在控制 F 层中非平衡分布的电压的某些值下,通过 S-F-S 结的临界约瑟夫森电流急剧增加(高达几个数量级)。