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Evidence for Crossed Andreev Reflection in (100)YBa_2Cu_3O_(7-δ)-SrRuO_3 superconductor-ferromagnet bilayers

机译:(100)YBa_2Cu_3O_(7-δ)-SrRuO_3超导体-铁磁体双层膜中Andreev交叉反射的证据

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Since the ferromagnetic side of a superconductor-ferromagnet junction is spin polarized, Andreev reflections are suppressed. Consequently, the induced superconductor order parameter in the ferromagnet is expected to decay rapidly, on the order of a few nm. Our scanning tunneling spectroscopy measurements on thin epitaxial (100)YBa_2Cu_3O_(7-δ)-SrRuO_3 (YBCO-SRO) bilayers, where SRO is a ferromagnet, indeed show that on most of the junction area the superconductor order parameter vanishes in the SRO over a distance less than 8 nm. However, we find localized regions, arranged along narrow ( < 10 nm) stripes, where the order parameter (superconductor-like gap structure) penetrates the ferromagnet more than 20 nm. This is attributed to "crossed Andreev reflections", taking place at domain boundaries, where an electron from one magnetic domain is retro reflected as a hole with opposite spin in an adjacent domain. This phenomenon, directly observed here for the first time, may account for the (not abundant) cases where a long-range proximity effect was found in superconductor-ferromagnet proximity systems.
机译:由于超导体-铁磁体结的铁磁侧是自旋极化的,因此可以抑制安德列夫反射。因此,预计铁磁体中的感应超导体阶跃参数将迅速衰减,约为几纳米。我们在薄外延(100)YBa_2Cu_3O_(7-δ)-SrRuO_3(YBCO-SRO)双层外延层上的扫描隧穿光谱测量结果表明,在大多数结区域上,超导体阶数参数在SRO上消失了小于8 nm的距离。但是,我们发现沿狭窄的条纹(<10 nm)排列的局部区域,其中的阶跃参数(类超导体间隙结构)穿过铁磁体的深度超过20 nm。这归因于在畴边界处发生的“交叉安德列夫反射”,来自一个磁畴的电子被逆向反射为在相邻畴中具有相反自旋的空穴。这种现象在这里是首次直接观察到,这可以解释在超导体-铁磁体邻近系统中发现远距离邻近效应的情况(不充分)。

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