Tang Jingyi, Lemons Randy, Liu Wei, Vetter Sharon, Maxwell Timothy, Decker Franz-Josef, Lutman Alberto, Krzywinski Jacek, Marcus Gabriel, Moeller Stefan, Huang Zhirong, Ratner Daniel, Carbajo Sergio
SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, California 94025, USA.
Department of Applied Physics, Stanford University, Stanford, California 94305, USA.
Phys Rev Lett. 2020 Apr 3;124(13):134801. doi: 10.1103/PhysRevLett.124.134801.
Microbunching instability (MBI) driven by beam collective effects is known to be detrimental to high-brightness storage rings, linacs, and free-electron lasers (FELs). One known way to suppress this instability is to induce a small amount of energy spread to an electron beam by a laser heater. The distribution of the induced energy spread greatly affects MBI suppression and can be controlled by shaping the transverse profile of the heater laser. Here, we present the first experimental demonstration of effective MBI suppression using a LG_{01} transverse laser mode and compare the improved results with respect to traditional Gaussian transverse laser mode at the Linac Coherent Light Source. The effects on MBI suppression are characterized by multiple downstream measurements, including longitudinal phase space analysis and coherent radiation spectroscopy. We also discuss the role of LG_{01} shaping in soft x-ray self-seeded FEL emission, one of the most advanced operation modes of a FEL for which controlled suppression of MBI is critical.
由束流集体效应驱动的微聚束不稳定性(MBI)已知对高亮度储存环、直线加速器和自由电子激光(FEL)有害。一种已知的抑制这种不稳定性的方法是通过激光加热器向电子束引入少量能量展宽。引入的能量展宽分布对MBI抑制有很大影响,并且可以通过塑造加热器激光的横向轮廓来控制。在此,我们展示了首次使用LG₀₁横向激光模式有效抑制MBI的实验,并在直线加速器相干光源处将改进结果与传统高斯横向激光模式进行了比较。对MBI抑制的影响通过多个下游测量来表征,包括纵向相空间分析和相干辐射光谱学。我们还讨论了LG₀₁整形在软X射线自种子FEL发射中的作用,软X射线自种子FEL发射是FEL最先进的运行模式之一,对于这种模式,受控抑制MBI至关重要。