欧洲XFEL软X射线线的自种子方案
摘要
本文讨论了增强欧洲自由电子激光器在软X射线波段能力的潜力。高纵向相干性将是这种性能升级的关键。为了实现这一目标,我们研究了一种最初在SLAC设计的非常紧凑的软X射线自种子方案[1,2]。该方案基于光栅单色器,可以直接安装在欧洲XFEL的SASE3波荡器束线上。对于欧洲XFEL,全相干软X射线脉冲特别有价值,因为它们通过利用可调间隙SASE3波荡器中的锥度,自然支持提取比饱和时更多的FEL功率。锥度包括从段到段逐步改变波荡器间隙。基于从头到尾的模拟,我们显示软X射线FEL功率达到约800 GW,比饱和时的SASE水平(100 GW)高约一个数量级。本工作中研究的自种子设置非常紧凑(约5米长),且成本效益高。这最后一个特点可能证明将其视为从运行阶段一开始就增强欧洲XFEL能力的可能补充是合理的。[1] Y. Feng, J. Hastings, P. Heimann, M. Rowen, J. Krzywinski, and J. Wu, "X-ray Optics for soft X-ray self-seeding the LCLS-II", proceedings of 2010 FEL conference, Malmo, Sweden, (2010). [2] Y. Feng, P. Heimann, J. Wu, J. Krzywinski, M. Rowen, and J. Hastings, "Compact Grating Monochromator Design for LCLS-I Soft X-ray Self-Seeding", https://slacportal.slac.stanford.edu/sites/lcls_public/lcls_ii/Lists/LCLS_II_Calendar/Physics_Meetings.aspx, May 2011 and https://sites.google.com/a/lbl.gov/realizing-the-potential-of-seeded-fels-in-the-soft-x-ray-regime-workshop/talks, October 2011
引用
@article{arxiv.1202.5209,
title = {Self-seeding scheme for the soft X-ray line at the European XFEL},
author = {Gianluca Geloni and Vitaly Kocharyan and Evgeni Saldin},
journal= {arXiv preprint arXiv:1202.5209},
year = {2012}
}