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Electron-Spin Precession in Dependence of the Orientation of the External Magnetic Field

机译:电子自旋进动取决于外部磁场的方向

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摘要

Electron-spin dynamics in semiconductor-based heterostructures has been investigated in oblique magnetic fields. Spins are generated optically by a circularly polarized light, and the dynamics of spins in dependence of the orientation (θ) of the magnetic field are studied. The electron-spin precession frequency, polarization amplitude, and decay rate as a function ofθare obtained and the reasons for their dependences are discussed. From the measured data, the values of the longitudinal and transverse components of the electrong-factor are estimated and are found to be in good agreement with those obtained in earlier investigations. The possible mechanisms responsible for the observed effects are also discussed.
机译:在倾斜磁场中已经研究了基于半导体的异质结构中的电子自旋动力学。通过圆偏振光光学地产生自旋,并且研究了自旋的动力学与磁场的方向(θ)的关系。得到了电子自旋进动频率,极化幅度和衰减率随θ的变化规律,并讨论了其依赖性。从测得的数据中,可以估算出电子因子的纵向和横向分量的值,并发现它们与早期研究获得的值非常一致。还讨论了造成观察到的效果的可能机制。

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