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Increasing the performance of a superconducting spin valve using a Heusler alloy

机译:使用Heusler合金提高超导旋转阀的性能

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摘要

We have studied superconducting properties of spin-valve thin-layer heterostructures CoOx/F1/Cu/F2/Cu/Pb in which the ferromagnetic F1 layer was made of Permalloy while for the F2 layer we have taken a specially prepared film of the Heusler alloy Co2Cr1− xFexAl with a small degree of spin polarization of the conduction band. The heterostructures demonstrate a significant superconducting spin-valve effect, i.e., a complete switching on and off of the superconducting current flowing through the system by manipulating the mutual orientations of the magnetization of the F1 and F2 layers. The magnitude of the effect is doubled in comparison with the previously studied analogous multilayers with the F2 layer made of the strong ferromagnet Fe. Theoretical analysis shows that a drastic enhancement of the switching effect is due to a smaller exchange field in the heterostructure coming from the Heusler film as compared to Fe. This enables to approach an almost ideal theoretical magnitude of the switching in the Heusler-based multilayer with a F2 layer thickness of ca. 1 nm.
机译:我们研究了自旋阀薄层异质结构CoOx / F1 / Cu / F2 / Cu / Pb的超导性能,其中铁磁F1层由坡莫合金制成,而F2层则采用了特制的Heusler合金膜Co2Cr1-xFexAl具有较小的导带自旋极化度。异质结构表现出显着的超导自旋阀效应,即通过控制F1和F2层磁化的相互取向来完全接通和断开流过系统的超导电流。与先前研究的具有由强铁磁体Fe制成的F2层的类似多层相比,该效应的大小增加了一倍。理论分析表明,与Fe相比,由于Heusler膜产生的异质结构中的交换场更小,因此开关效应的极大增强。这使得能够在F2层厚度大约为1的基于Heusler的多层结构中接近接近理想的开关理论值。 1纳米

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