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现任西安交通大学材料科学与工程学院教授,入选西安交通大学“青年拔尖人才计划”。2010年于复旦大学获博士学位,2010年至2019年任职于湘潭大学,期间于2011至2014年在东京大学从事博士后研究,2015至2016年赴德州大学奥斯汀分校访问。自2019年起加入西安交通大学。长期致力于计算凝聚态物理研究,聚焦于芯片中电子元器件小型化与高密度化所导致的功耗挑战,结合模型构建与计算模拟,在界面量子调控方向开展了系统研究。主要工...
郭志新
Professor
Papers
Q. Lu, P. Li, Z. X. Guo*, G. Dong*, B. Peng, X. Zha, T. Min, Z. Zhou, M. Liu*, Giant tunable spin Hall angle in sputtered Bi2Se3 controlled by an electric field, Nature Communications 13, 1650 (2022).
Release Time:2026-05-21 Hits:
Date:
2026-05-21
Title of Paper:
Q. Lu, P. Li, Z. X. Guo*, G. Dong*, B. Peng, X. Zha, T. Min, Z. Zhou, M. Liu*, Giant tunable spin Hall angle in sputtered Bi2Se3 controlled by an electric field, Nature Communications 13, 1650 (2022).
Summary:
Finding an effective way to greatly tune spin Hall angle in a low power manner is of fundamental importance for tunable and energy-efficient spintronic devices. Recently, topological insulator of Bi2Se3, having a large intrinsic spin Hall angle, show great capability to generate strong current-induced spin-orbit torques. Here we demonstrate that the spin Hall angle in Bi2Se3 can be effectively tuned asymmetrically and even enhanced about 600% reversibly by applying a bipolar electric field across the piezoelectric substrate. We reveal that the enhancement of spin Hall angle originates from both the charge doping and piezoelectric strain effet on the spin Berry curvature near Fermi level in Bi2Se3. Our findings provide a platform for achieving low power consumption and tunable spintronic devices.
Translation or Not:
No

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