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Quantum effects in spontaneous emission by a relativistic, undulating electron beam

机译:相对论的起伏电子束在自发发射中的量子效应

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Current models of the effect of spontaneous emission on the electron beam dynamics neglect the discreteness of electron recoil associated with photon emission. We present a novel, one-dimensional model of the effect of spontaneous emission on the electron beam dynamics in an undulator both in the classical regime where discrete electron recoil is negligible, and in the quantum regime where it is significant. It is shown that in the classical regime, continuous decrease of the average electron energy and diffusive growth of the electron energy spread occurs, in agreement with previous classical models. In the quantum regime, it is shown that the evolution of the electron momentum distribution occurs as discrete momentum groups according to a Poisson distribution. The narrow momentum features of the quantum regime may be useful for generation of coherent radiation, which relies on electron beams having sufficiently narrow momentum/energy distributions.
机译:自发发射对电子束动力学的影响的当前模型忽略了与光子发射相关的电子反冲的离散性。我们提出了一种新颖的一维模型,它既可以在离散电子反冲可忽略的经典状态下,也可以在明显的量子状态下,对波动器中电子发射动力学的自发发射产生影响。结果表明,在经典状态下,与以前的经典模型一致,平均电子能量不断下降,电子能量扩散扩散扩散。在量子状态下,证明了电子动量分布的演化按照泊松分布以离散动量组的形式发生。量子态的窄动量特征可用于产生相干辐射,该相干辐射依赖于具有足够窄的动量/能量分布的电子束。

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