Zhukovsky K
Department of Theoretical Physics, Faculty of Physics, M. V. Lomonosov Moscow State University, Moscow 119991, Russian Federation.
J Synchrotron Radiat. 2020 Nov 1;27(Pt 6):1648-1661. doi: 10.1107/S1600577520012230. Epub 2020 Oct 22.
A theoretical study of the spontaneous and stimulated undulator radiation (UR) from electrons in undulators with multiple periods in both transversal directions is presented. Exact expressions are derived for the UR intensities in terms of the generalized Bessel and Airy functions, accounting for undulator field harmonics of arbitrary strength and for real parameters of the beams and installations. Theoretical results are verified with numerical and experimental data for SWISS-XFEL, PAL-XFEL, LEUTL, LCLS etc. The spectrum, UR line shape and width, and the harmonic evolution along the undulators are analyzed and compared with the available data for these experiments. Moreover, the effect of the field harmonics is elucidated. It is demonstrated that the third field harmonic can cause distinct odd UR harmonics. The asymmetric undulator field configuration is identified, which allows intense radiation of these harmonics. The power evolution in a free-electron laser (FEL) with such an undulator is studied by means of an analytical FEL model. The latter is enhanced by a true description of the gradual power saturation of harmonics. A FEL with elliptic undulator and electron-photon phase-shifting is proposed and modeled. It is shown that the resulting harmonic power from the phase-shifted elliptic undulator can be significantly higher than from a planar undulator with the same phase-shifting.
本文对电子在横向具有多个周期的波荡器中自发和受激的波荡器辐射(UR)进行了理论研究。根据广义贝塞尔函数和艾里函数推导了UR强度的精确表达式,其中考虑了任意强度的波荡器场谐波以及束流和装置的实际参数。利用瑞士X射线自由电子激光装置(SWISS-XFEL)、日本光子工厂自由电子激光装置(PAL-XFEL)、先进光源紫外自由电子激光装置(LEUTL)、直线加速器相干光源(LCLS)等的数值和实验数据对理论结果进行了验证。分析了光谱、UR线形和宽度以及沿波荡器的谐波演化,并与这些实验的现有数据进行了比较。此外,阐明了场谐波的影响。结果表明,第三场谐波可导致明显的奇数UR谐波。确定了非对称波荡器场配置,该配置允许这些谐波的强辐射。通过解析自由电子激光(FEL)模型研究了具有这种波荡器的自由电子激光器中的功率演化。通过对谐波逐渐功率饱和的真实描述对该模型进行了改进。提出并建立了具有椭圆波荡器和电子-光子相移的自由电子激光器模型。结果表明,具有相移的椭圆波荡器产生的谐波功率可比具有相同相移的平面波荡器产生的谐波功率高得多。