Spin and charge transport in ferromagnet-superconductor-ferromagnet heterostructures: Stoner versus spin mass mismatch mechanism

被引:1
|
作者
Gentile, Paola [1 ,2 ]
Catapano, Marilena [3 ]
De Vivo, Nicola [4 ]
Cuoco, Mario [1 ,2 ]
Romano, Alfonso [1 ,2 ]
Noce, Canio [1 ,2 ]
机构
[1] CNR SPIN, I-84084 Salerno, Italy
[2] Univ Salerno, Dipartimento Fis ER Caianiello, I-84084 Fisciano, SA, Italy
[3] Univ Salerno, I-84084 Fisciano, SA, Italy
[4] Intesa Sanpaolo Direz Rischi Finanziari & Mercato, Piazza Paolo Ferrari 10, I-20121 Milan, Italy
关键词
SINGLE-BAND MODEL; METALLIC FERROMAGNETISM; TEMPERATURE; POLARIZATION; CONDUCTIVITY; INJECTION; STATE;
D O I
10.1103/PhysRevB.105.214501
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We study transport phenomena through a ballistic ferromagnet-superconductor-ferromagnet (F/S/F) junction, comparing the case in which the ferromagnetic order in the two F layers is of the standard Stoner type with the case where it is driven by a spin mass mismatch (SMM). It is shown that the two mechanisms lead to a different behavior in the charge and the spin conductances, especially when compared to the corresponding nonsuperconducting ferromagnet-normal-ferromagnet (F/N/F) junctions. In particular, when the injected current is perpendicular to the barrier, for high barrier transparency and large magnetization of the F layers, the large mass mismatch gives rise to an enhancement of both low-bias charge and spin conductances of the F/S/F junction, which is not observed in the equal-mass case. When all the allowed injection directions are considered, the low-bias enhancement of the charge conductance for SMM leads still holds for high-barrier transparency and large magnetization of the F layers. However, in the case of nontransparent interfaces, spin transport with SMM ferromagnets exhibits an opposite sign response with respect to the Stoner case at high biases for all magnetization values, also manifesting a significant amplification induced by superconductivity at the gap edge. The above-mentioned differences can be exploited to probe the nature of the electronic mechanism underlying the establishment of the ferromagnetic order in a given material.
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页数:17
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