Long-Range Spin-Triplet Superconductivity Induced by Magnetic Field in d Wave Superconductor/Ferromagnet Hybrid System

被引:0
|
作者
W. Wang
D. F. Shao
R. C. Xiao
W. J. Lu
H. Y. Wu
机构
[1] Chinese Academy of Sciences,Key Laboratory of Materials Physics, Institute of Solid State Physics
[2] Anhui University,Modern Experiment Technology Center
来源
Journal of Superconductivity and Novel Magnetism | 2016年 / 29卷
关键词
Eilenberger equation; Long-range proximity effect; Spin triplet; Spintronics;
D O I
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中图分类号
学科分类号
摘要
We theoretically study the long-range spin- triplet superconductivity in d wave superconductor/ ferromagnet/ferromagnet (S/F1/F2) trilayer junction, in which the magnetization of F1 layer could be rotated in the y–z plane by an external magnetic field. The four-component Eilenberger equations were constructed to calculate the superconducting order parameters and density of states (DOS). Near the clean limit, the p wave equal-spin triplet component could be induced when the magnetization directions of F1/F2 layers are non-collinear, and the DOS exhibits a split zero-bias conductance peak. The various parameters such as ferromagnetic exchange energy, thickness of ferromagnetic layers, and angles between F1/F2 magnetization directions are studied for the effect on inducing triplet superconductivity. By magnetic field controlling the emergence of equal-spin triplet pairings or not, such a tunable S/F1/F2 trilayer junction based on long-range spin-triplet superconductivity could be used as a superconducting switch device, which would open up a new view of spintronics.
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页码:1741 / 1746
页数:5
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