Hau-Riege Stefan P, Chapman Henry N
Lawrence Livermore National Laboratory, P.O. Box 808, Livermore, California 94551, USA.
Rev Sci Instrum. 2007 Jan;78(1):013104. doi: 10.1063/1.2428271.
In order to utilize hard x-ray free electron lasers (XFEL's) when they are extended to attosecond pulse lengths, it is necessary to choose optical elements with minimal response time. Specular grazing-incidence optics made of low-Z materials are popular candidates for reflectors since they are likely to withstand x-ray damage and provide sufficiently large reflectivities. Using linear-optics reflection theory, we calculated the transient reflectivity of a delta-function electric pulse from a homogenous semi-infinite medium as a function of angle of incidence for s- and p-polarized light. We specifically considered the pulse response of beryllium, diamond, silicon carbide, and silicon, all of which are of relevance to the XFEL's that are currently being built. We found that the media emit energy in a damped oscillatory way, and that the impulse-response times are shorter than 0.3 fs for normal incidence. For grazing incidence, the impulse-response time is substantially shorter, making grazing-incidence mirrors a good choice for deep subfemtosecond reflective optics.
为了在硬X射线自由电子激光(XFEL)扩展到阿秒脉冲长度时加以利用,有必要选择响应时间最短的光学元件。由低Z材料制成的镜面掠入射光学元件是反射镜的热门选择,因为它们可能承受X射线损伤并提供足够大的反射率。利用线性光学反射理论,我们计算了来自均匀半无限介质的δ函数电脉冲对于s偏振光和p偏振光的瞬态反射率随入射角的变化。我们特别考虑了铍、金刚石、碳化硅和硅的脉冲响应,所有这些都与当前正在建造的XFEL相关。我们发现,这些介质以阻尼振荡的方式发射能量,并且对于垂直入射,脉冲响应时间短于0.3飞秒。对于掠入射,脉冲响应时间要短得多,这使得掠入射镜成为深亚飞秒反射光学的一个不错选择。