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Space-frequency model of amplified spontaneous emission and super-radiance in free-electron laser operating in the linear and non-linear regimes

机译:在线性和非线性制度下操作的自由电子激光器放大自发排放和超辐射的空间频率模型

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A three-dimensional, space-frequency model for the excitation of electromagnetic radiation in a free-electron laser is presented. The approach is applied in a numerical particle code WB3D simulating the interaction of a free-electron laser operating in the linear and non-linear regimes. Solution of the electromagnetic excitation equations in the frequency domain inherently takes into account dispersive effects arising from the cavity and the gain medium. Moreover, it facilitates the consideration of statistical features of the electron beam and the excited radiation necessary for the study of spontaneous emission, synchrotron amplified spontaneous emission (SASE), super-radiance and noise. We employ the code to study the statistical and spectral characteristics of the radiation generated in a pulsed beam free-electron laser operating in the millimeter wavelengths. The evolution of the radiation spectrum, excited when a Gaussian-shaped bunch with a random distribution of electrons is passing through the wiggler, was investigated.
机译:提出了一种用于自由电子激光器中电磁辐射激发的三维空间频率模型。该方法应用于模拟在线性和非线性制度中操作的自由电子激光器的相互作用的数值粒子代码WB3D。频域中的电磁激励方程的溶液固有地考虑了腔和增益介质产生的分散效果。此外,它有助于考虑电子束的统计特征和研究自发排放,同步发射的自发发射(SASE),超辐射和噪声所需的激发辐射。我们采用代码来研究在毫米波长的脉冲光束自由电子激光器中产生的辐射的统计和光谱特性。研究了辐射光谱的进化,激发当具有电子的随机分布的高斯形束通过摇摆物时,被研究。

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