纤锌矿晶体结构
静水压力
去极化
凝聚态物理
材料科学
动力学(音乐)
宽禁带半导体
流体静力平衡
光电子学
物理
生物物理学
锌
机械
量子力学
生物
声学
冶金
作者
Shixiong Zhang,Ning Tang,Weikun Ge,Bo Shen
摘要
Spin depolarization dynamics of wurtzite GaN under hydrostatic pressure was investigated by combining a time-resolved Kerr rotation spectroscopy with a diamond-anvil cell technique. Upon resonant excitation with bandgap energy, spin polarization of electrons is observed to be robust up to several gigapascals. It is found that the spin depolarization is significantly accelerated due to the generation of non-radiative recombination centers induced by hydrostatic pressure, while the electron spin relaxation time shows a weak dependence on pressure. This observation is attributed to the wide bandgap of wurtzite GaN, which leads to an almost unchanged Rashba spin–orbit coupling within the pressure range of several gigapascals. Based on the D'yakonov–Perel' model, the effects of hydrostatic pressure and biaxial strain induced by the substrate on electron spin relaxation time are estimated in GaN epilayers. These findings provide insights into the underlying mechanism of spin relaxation and are crucial for spin manipulation in the development of GaN-based spintronic devices.
科研通智能强力驱动
Strongly Powered by AbleSci AI