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Dynamics of a relativistic charged particle in a constant homogeneous magnetic field and a transverse homogeneous rotating electric field

机译:相对论的带电粒子在恒定均匀磁场和横向均匀旋转电场中的动力学

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摘要

The relativistic motion of a charged particle in a homogeneous time-independent magnetic field and a transverse circularly polarized homogeneous electric field is reduced to an integrable form. Using canonical transformations, it is shown that the equations of motion can be derived from a one degree of freedom time-dependent Hamiltonian that has a first integral. The trajectories and the dynamics of the particle are studied. Tractable approximate expressions for the maximum kinetic energy are derived in two situations of experimental interest.
机译:带电粒子在均匀的与时间无关的磁场和横向圆极化的均匀电场中的相对论运动减小为可积分形式。使用规范变换表明,运动方程可以从具有第一积分的单自由度时变哈密顿量导出。研究了粒子的轨迹和动力学。在两种感兴趣的实验情况下,得出了最大动能的可牵引近似表达式。

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