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Identifying the Stern-Gerlach force of classical electron dynamics

机译:识别经典电子动力学的Stern-Gerlach力

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摘要

Different classical theories are commonly applied in various branches of physics to describe the relativistic dynamics of electrons by coupled equations for the orbital motion and spin precession. Exemplarily, we benchmark the Frenkel model and the classical Foldy-Wouthuysen model with spin-dependent forces (Stern-Gerlach forces) to the quantum dynamics as predicted by the Dirac equation. Both classical theories can lead to different or even contradicting predictions how the Stern-Gerlach forces modify the electron’s orbital motion, when the electron moves in strong electromagnetic field configurations of emerging high-intensity laser facilities. In this way, one may evaluate the validity and identify the limits of these classical theories via a comparison with possible experiments to provide a proper description of spin-induced dynamics. Our results indicate that the Foldy-Wouthuysen model is qualitatively in better agreement with the Dirac theory than the widely used Frenkel model.
机译:不同的经典理论通常用于物理学的各个分支,它们通过轨道运动和自旋进动的耦合方程来描述电子的相对论动力学。示例性地,我们用自旋相关力(Stern-Gerlach力)对Dirac方程预测的量子动力学进行Frenkel模型和经典Foldy-Wouthuysen模型的基准测试。当电子在新兴的高强度激光设备的强电磁场配置中移动时,两种经典理论都可能导致不同的预测甚至相矛盾的预测,即斯特恩-盖拉赫力如何改变电子的轨道运动。通过这种方式,可以通过与可能的实验进行比较来评估自旋诱发动力学的正确描述,从而评估这些经典理论的有效性并确定其局限性。我们的结果表明,与广泛使用的Frenkel模型相比,Foldy-Wouthuysen模型在质量上与狄拉克理论更加吻合。

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