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Electro-optic spatial decoding on the spherical-wavefront Coulomb fields of plasma electron sources

机译:等离子电子源球面波前库仑场的电光空间解码

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摘要

Detections of the pulse durations and arrival timings of relativistic electron beams are important issues in accelerator physics. Electro-optic diagnostics on the Coulomb fields of electron beams have the advantages of single shot and non-destructive characteristics. We present a study of introducing the electro-optic spatial decoding technique to laser wakefield acceleration. By placing an electro-optic crystal very close to a gas target, we discovered that the Coulomb field of the electron beam possessed a spherical wavefront and was inconsistent with the previously widely used model. The field structure was demonstrated by experimental measurement, analytic calculations and simulations. A temporal mapping relationship with generality was derived in a geometry where the signals had spherical wavefronts. This study could be helpful for the applications of electro-optic diagnostics in laser plasma acceleration experiments.
机译:相对论电子束的脉冲持续时间和到达时间的检测是加速器物理学中的重要问题。电子束库仑场的电光诊断具有单发和无损特征的优点。我们目前正在研究将电光空间解码技术引入激光尾波加速技术。通过将电光晶体放置在非常接近气体目标的位置,我们发现电子束的库仑场具有球面波阵面,并且与先前广泛使用的模型不一致。通过实验测量,分析计算和模拟证明了场结构。具有普遍性的时间映射关系是在信号具有球形波前的几何形状中得出的。这项研究可能有助于电光诊断在激光等离子体加速实验中的应用。

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