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首页> 外文期刊>Laser and Particle Beams >Effects of beam temperature and plasma frequency on the radiation growth rate of a FEL with a laser wiggler
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Effects of beam temperature and plasma frequency on the radiation growth rate of a FEL with a laser wiggler

机译:光束温度和等离子体频率对激光织机辐射生长速率的影响

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A linearly polarized laser pulse has been employed as a wiggler in a free-electron laser (FEL) in the presence of a plasma background for generating short wavelength radiation down to the extreme ultraviolet ray and X-ray spectral regions. Introducing plasma background in the FEL interaction region would lessen the beam energy requirement and also enhance both the beam current and the electron-bunching process. This configuration affords the possibility of scaling the device to more compact FELs and would have a higher tunability by changing the plasma density and the temperature of the electron beam. Electron trajectories have been analyzed using single-particle dynamics. The effect of plasma density on electron orbits has been investigated. A polynomial dispersion relation considering longitudinal thermal motion has been derived, by employing perturbation analysis. Numerical studies indicate that by increasing plasma density, the growth rate for groups I and II decreases, while the growth rate for group III increases. In addition, the effect of beam temperature and cyclotron frequency on the growth rate has been discussed. It has been found that by increasing the thermal velocity of the electron beam, the growth rate for groups I and III trivially decreases, while it increases for group II orbits. Besides, an increase in cyclotron frequency cause growth enhancement for group I orbits, while it present a growth decrement for group II and III orbits.
机译:在等离子体背景的存在下,在自由电子激光器(FEL)中是一种线性偏振光激光脉冲的用于产生短波长辐射到极端紫外线和X射线光谱区域的威格勒。在FEC相互作用区域中引入等离子体背景将减少光束能量要求,并增强光束电流和电子束过程。该配置提供了将设备缩放到更紧凑的纤维的可能性,并且通过改变等离子体密度和电子束的温度来具有更高的可调性。使用单粒子动力学分析了电子轨迹。研究了等离子体密度对电子轨道的影响。通过采用扰动分析来推导考虑纵向热运动的多项式分散关系。数值研究表明,通过增加等离子体密度,I和II基团的生长速率降低,而III组的生长速率增加。此外,讨论了梁温度和回旋频对生长速率的影响。已经发现,通过增加电子束的热速度,I和III基团的生长速率降低,而II族轨道的增加。此外,回旋频的增加导致I轨道群体的生长增强,而II和III轨道的增长减少呈现出增长。

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