首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Longitudinal impedance and wake from XFEL undulators. Impact on current-enhanced SASE schemes
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Longitudinal impedance and wake from XFEL undulators. Impact on current-enhanced SASE schemes

机译:纵向阻抗和XFEL波动器的唤醒。对当前增强型SASE方案的影响

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摘要

In this article we derive longitudinal impedance and wake function for an undulator setup with arbitrary undulator parameter, taking into account a finite transverse size of the electron bunch. Earlier studies considered a line density-distribution of electrons instead. We focus our attention on the long-wavelength asymptote (compared with resonance wavelength), at large distance of the electron bunch from the undulator entrance compared to the overtaking length, and for large vacuum-chamber size compared to the typical transverse size of the field. These restrictions define a parameter region of interest for practical applications. We calculate a closed expression for impedance and wake function that may be evaluated numerically in the most general case. Such expression allows us to derive an analytical solution for a Gaussian transverse and longitudinal bunch shape. Finally, we study the feasibility of current-enhanced SASE schemes (ESASE) recently proposed for LCLS, that fall well-within our approximations. Numerical estimations presented in this paper indicate that impedance-induced energy spread is sufficient to seriously degrade the FEL performance.
机译:在本文中,我们考虑了电子束的有限横向尺寸,得出了具有任意起伏器参数的起伏器装置的纵向阻抗和唤醒功能。较早的研究改为考虑电子的线密度分布。我们将注意力集中在长波渐近线(与共振波长相比)上,在距起伏器入口较远的电子束较远的电子束处,对于较大的真空室尺寸则与典型的横向横向尺寸相比。这些限制定义了实际应用中感兴趣的参数区域。我们为阻抗和唤醒函数计算一个闭合表达式,在最一般的情况下可以用数值评估。这样的表达式使我们能够导出高斯横向和纵向束形状的解析解。最后,我们研究了最近针对LCLS提出的当前增强型SASE方案(ESASE)的可行性,该方案在我们的近似范围内。本文提出的数值估计表明,阻抗引起的能量扩散足以严重降低FEL性能。

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