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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Spin-dependent effects in high-order above-threshold ionization: spin-orbit interaction and exchange effects
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Spin-dependent effects in high-order above-threshold ionization: spin-orbit interaction and exchange effects

机译:高阶依赖性效应高于阈值电离:旋转轨道相互作用和交换效果

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Spin-dependent effects in atomic processes can be caused by the spin-orbit interaction or/and by the requirement that the wave function of identical electrons is antisymmetric. Such effects are usually neglected in strong-field physics. We show two examples, supported by theoretical results and numerical calculations, in which these effects are important. The first one is based on strong-field ionization of Xe atoms by a bicircular field. The corresponding momentum distribution of spin-polarized electrons emitted in the above-threshold ionization process exhibits wavelength-dependent fast oscillations. For longer wavelengths and small electron emission angle there is a wide photoelectron kinetic energy region in which the spin asymmetry parameter changes continuously from large positive to large negative values. In addition, the emission time of such electrons in high-order above-threshold ionization is determined on the attosecond time scale. The second process considered is high-order above-threshold ionization of excited Li+ ions. We have found that in this case, even in the absence of spin-orbit coupling, the photoelectron momentum distribution strongly depends on the initial spin state. In the singlet state we have characteristic minima, which are caused by the destructive interference of the direct and exchange rescattering amplitudes. Such minima are absent in the triplet state.
机译:原子过程中的旋转依赖性效应可以由旋转轨道相互作用或/和所要求引起相同电子的波函数是防反对手的。这种效果通常在强大的物理学中被忽略。我们展示了两个示例,由理论结果和数值计算支持,其中这些效果很重要。第一个基于双翼场基于Xe原子的强野电离。在上述阈值电离过程中发出的旋转偏振电子的相应动量分布表现出波长依赖性的快速振荡。对于较长的波长和小的电子发射角,存在宽的光电子动能区域,其中旋转不对称参数从大到大的负值的大量变化。另外,在差分时间尺度上确定以高阶阈值电离的这种电子的发射时间。认为第二种方法是激发锂+离子的高阶阈值电离。我们已经发现,在这种情况下,即使在没有自旋轨道耦合的情况下,光电子动量分布很大程度上取决于初始旋转状态。在单线时的状态下,我们具有特征性的最小值,这是由直接和交换振荡幅度的破坏性干扰引起的。在三重态状态下不存在这种最小值。

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