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COLLECTIVE EFFECTS IN PULSED BEAM FREE-ELECTRON LASERSOPERATING IN THE TERA-HERTZ REGIME

机译:Tera-Hertz制度中脉冲光束自由电子激光的集体作用

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Intense radiation devices such as microwave tubes, free-electron lasers (FELs) and masers, utilize distributed interaction between an electron beam and the electromagnetic field. Our space-frequency theory is extended to consider collective effects emerging while ultra short electron pulses are propagating in the interaction region. The total electromagnetic field (radiation and space-charge waves) is presented in the frequency domain as an expansion in terms of transverse eigen-modes. The mutual interaction between the electron beam and the electromagnetic field is fully described by a set of coupled equations, expressing the evolution of mode amplitudes and electron beam dynamics. The model is used for the analysis and simulation of radiation excitation and propagation in pulsed beam free-electron lasers operating in millimeter wavelengths and in the Tera-Hertz frequencies. The approach is applied in a numerical particle code WB3D, simulating wide-band interaction of a free-electron laser operating in the linear and non-linear regimes. The model is utilized to study spontaneous and super-radiant emissions radiated by a an electron bunch at the sub-millimeter regime, taking into account three dimensional space-charge effects playing a role in such ultra short bunches.
机译:诸如微波管,自由电子激光器(纤维)和涂料的强烈辐射装置利用电子束与电磁场之间的分布式相互作用。我们的空间频率理论延长以考虑新出现的集体效应,而超短电子脉冲在交互区域中传播。频域中的总电磁场(辐射和空穴电荷波)作为横向于尖端模式的扩展。通过一组耦合方程式完全描述电子束和电磁场之间的相互相互作用,表达模式幅度和电子束动力学的演变。该模型用于分析和仿真在毫米波长的脉冲光束自由电子激光器中的辐射激发和传播的分析和仿真在Tera-Hertz频率中。该方法应用于数值粒子码WB3D,模拟在线性和非线性制度中操作的自由电子激光器的宽带相互作用。该模型用于研究在亚毫米制度处通过电子束辐射的自发和超辐射排放,考虑到在这种超短束中发挥作用的三维空间电荷效应。

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