Enhanced controllable triplet proximity effect in superconducting spin-orbit coupled spin valves with modified superconductor/ferromagnet interfaces

被引:2
|
作者
Bregazzi, A. T. [1 ]
Ouassou, J. A. [2 ]
Coveney, A. G. T. [1 ]
Stelmashenko, N. A. [3 ]
Child, A. [1 ]
N'Diaye, A. T. [4 ]
Robinson, J. W. A. [3 ]
Dejene, F. K. [1 ]
Linder, J. [2 ]
Banerjee, N. [1 ,5 ]
机构
[1] Loughborough Univ, Dept Phys, Loughborough LE11 3TU, England
[2] Norwegian Univ Sci & Technol, Ctr Quantum Spintron, Trondheim, Norway
[3] Univ Cambridge, Dept Mat Sci & Met, 27 Charles Babbage Rd, Cambridge CB3 0FS, England
[4] Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA
[5] Imperial Coll London, Blackett Lab, Dept Phys, London SW7 2AZ, England
基金
英国工程与自然科学研究理事会;
关键词
ORIGIN; TRANSITION; EXCHANGE; FIELD;
D O I
10.1063/5.0209305
中图分类号
O59 [应用物理学];
学科分类号
摘要
In a superconductor/ferromagnet hybrid, a magnetically controlled singlet-to-triplet Cooper pair conversion can modulate the superconducting critical temperature. In these triplet superconducting spin valves, such control usually requires inhomogeneous magnetism. However, in the presence of spin-orbit coupling from an interfacial heavy metal layer, the singlet/triplet conversion rate and, thus, critical temperature can be controlled via the magnetization direction of a single homogeneous ferromagnet. Here, we report significantly enhanced controllable pair conversion to a triplet state in a Nb/Pt/Co/Pt superconducting spin valve in which Pt/Co/Pt is homogenously magnetized and proximity-coupled to a superconducting layer of Nb. The Co/Pt interface furthest away from Nb is modified by a sub-nanometer-thick layer of Cu or Au. We argue that the enhancement is most likely associated from an improvement of the Co/Pt interface due to the insertion of Cu and Au layers. Additionally, the higher normalized orbital moments in Au measured using x-ray magnetic circular dichroism shows that increasing spin-orbit coupling enhances the triplet proximity effect-an observation supported by our theoretical calculations. Our results provide a pathway to enhancing triplet pair creation by interface engineering for device development in superspintronics.
引用
收藏
页数:6
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