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首页> 外文期刊>International Journal of Modern Physics, A. Particles and Fields, Gravitation, Cosmology >Quantum Larmor radiation from a moving charge in an electromagnetic plane wave background
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Quantum Larmor radiation from a moving charge in an electromagnetic plane wave background

机译:电磁平面波背景中运动电荷的量子拉莫尔辐射

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We extend our previous work [Phys. Rev. D 83, 045030 (2011)], which investigated the first-order quantum effect in the Larmor radiation from a moving charge in a spatially homogeneous time-dependent electric field. Specifically, we investigate the quantum Larmor radiation from a moving charge in a monochromatic electromagnetic plane wave background based on the scalar quantum electrodynamics at the lowest order of the perturbation theory. Using the inin formalism, we derive the theoretical formula of the total radiation energy from a charged particle in the initial states being at rest and being in a relativistic motion. Expanding the theoretical formula in terms of the Planck constant ?, we obtain the first-order quantum effect on the Larmor radiation. The quantum effect generally suppresses the total radiation energy compared with the prediction of the classical Larmor formula, which is a contrast to the previous work. The reason is explained by the fact that the radiation from a moving charge in a monochromatic electromagnetic plane wave is expressed in terms of the inelastic collisions between an electron and photons of the background electromagnetic waves.
机译:我们扩展了以前的工作[Phys。 Rev. D 83,045030(2011)],它研究了在空间均匀的随时间变化的电场中来自运动电荷的拉莫尔辐射中的一阶量子效应。具体来说,我们基于扰动理论最低阶的标量量子电动力学研究了单色电磁平面波背景中运动电荷的量子拉莫尔辐射。使用inin形式主义,我们从处于静止状态且处于相对论运动的初始状态的带电粒子中得出了总辐射能的理论公式。用普朗克常数ε扩展理论公式,我们得到了对拉莫尔辐射的一阶量子效应。与经典拉莫尔公式的预测相比,量子效应通常会抑制总辐射能,这与以前的工作形成了对比。通过以下事实来解释该原因:来自单色电磁平面波中的运动电荷的辐射是根据背景电磁波的电子与光子之间的非弹性碰撞来表示的。

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