首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Polarization-dependent pump-probe studies in atomic fine-structure levels: towards the production of spin-polarized electrons
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Polarization-dependent pump-probe studies in atomic fine-structure levels: towards the production of spin-polarized electrons

机译:原子精细结构水平下依赖极化的泵浦探针研究:朝着产生自旋极化电子的方向发展

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The precession of orbital and spin angular momentum vectors has been observed in a pump-probe study of the 4P fine-structure states of atomic potassium. A femtosecond pump pulse prepared a coherent superposition of the two fine-structure components. A time-delayed probe pulse then ionized the system after it had been allowed to evolve freely. Oscillations recorded in the ion signal reflect the evolution of the orientation of the orbital and spin angular momentum due to spin-orbit coupling. This interpretation gives physical insight into the cause of the half-period phase shift observed when the relative polarizations of the laser pulses were changed from parallel to perpendicular. Finally, it is shown that these changes in the orientation of the spin momentum vector of the system can be utilized to produce highly spin-polarized free electrons on the femtosecond scale. [References: 32]
机译:在原子钾的4P精细结构态的泵浦研究中已经观察到轨道和自旋角动量矢量的进动。飞秒泵浦脉冲准备了两个精细结构分量的相干叠加。经过延时的探测脉冲在允许系统自由放出后将系统电离。离子信号中记录的振荡反映了由于自旋轨道耦合而引起的轨道取向和自旋角动量的演变。这种解释提供了对当激光脉冲的相对偏振从平行更改为垂直时观察到的半周期相移的原因的物理了解。最后,证明了系统自旋动量矢量方向的这些变化可用于产生飞秒级的高度自旋极化的自由电子。 [参考:32]

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