自旋电子学
拓扑绝缘体
凝聚态物理
旋转泵
拓扑(电路)
异质结
铁磁性
表面状态
材料科学
电导
马格农
自旋极化
物理
自旋霍尔效应
曲面(拓扑)
量子力学
电子
数学
组合数学
几何学
作者
Lalit Pandey,Rahul Gupta,Amir Khan,Nanhe Kumar Gupta,Soumyarup Hait,Nakul Kumar,Vireshwar Mishra,Nikita Sharma,Peter Svedlindh,Sujeet Chaudhary
摘要
Topological insulators with high spin–orbit coupling and helically spin-momentum-locked topological surface states (TSSs) can serve as efficient spin current generators for modern spintronics applications. We used the industrial-friendly DC magnetron sputtering technique to fabricate magnetic heterostructures consisting of Bi2Te3 (BT) as a topological insulator and Co60Fe20B20 (CFB) as a magnetic layer and studied the temperature-dependent spin pumping, utilizing out-of-plane ferromagnetic resonance spectroscopy. These results demonstrate that the effective spin-mixing conductance is significantly affected by the contribution of two-magnon scattering (TMS). It is found that the TMS-free effective spin-mixing conductance increases with decreasing temperature. Additionally, results from magneto-transport measurements indicate that the surface coherence length of BT is in accordance with the temperature-dependent effective spin-mixing conductance. This enhancement of effective mixing conductance correlated with the enhancement in the contribution of the TSSs as evaluated using the weak-anti-localization effect. This study provides a deeper understanding of the temperature-dependent spin dynamics in sputtered BT/CFB heterostructures which can serve as a guide for further exploration of such bilayers for topological-based spintronic applications.
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