Majhi Arindam, Shurvinton Riley, Pradhan Paresh Chandra, Hand Matthew, Gu Weichen, Da Silva Murilo Bazan, Moriconi Simone, Nistea Ioana, Alcock Simon G, Wang Hongchang, Sawhney Kawal
Diamond Light Source, Harwell Science and Innovation Campus, Didcot OX11 0DE, United Kingdom.
J Synchrotron Radiat. 2024 Jul 1;31(Pt 4):706-715. doi: 10.1107/S1600577524004594. Epub 2024 Jun 21.
Ion beam figuring (IBF) is a powerful technique for figure correction of X-ray mirrors to a high accuracy. Here, recent technical advancements in the IBF instrument developed at Diamond Light Source are presented and experimental results for figuring of X-ray mirrors are given. The IBF system is equipped with a stable DC gridded ion source (120 mm diameter), a four-axis motion stage to manipulate the optic, a Faraday cup to monitor the ion-beam current, and a camera for alignment. A novel laser speckle angular measurement instrument also provides on-board metrology. To demonstrate the IBF system's capabilities, two silicon X-ray mirrors were processed. For 1D correction, a height error of 0.08 nm r.m.s. and a slope error of 44 nrad r.m.s. were achieved. For 2D correction over a 67 mm × 17 mm clear aperture, a height error of 0.8 nm r.m.s. and a slope error of 230 nrad r.m.s. were obtained. For the 1D case, this optical quality is comparable with the highest-grade, commercially available, X-ray optics.
离子束修形(IBF)是一种用于将X射线镜精确修形至高精度的强大技术。本文介绍了在钻石光源(Diamond Light Source)开发的IBF仪器的最新技术进展,并给出了X射线镜修形的实验结果。该IBF系统配备了一个稳定的直流栅控离子源(直径120 mm)、一个用于操纵光学元件的四轴运动平台、一个用于监测离子束电流的法拉第杯以及一个用于对准的相机。一种新型激光散斑角度测量仪器也提供了在线计量功能。为了展示IBF系统的能力,对两块硅X射线镜进行了处理。对于一维校正,实现了均方根高度误差为0.08 nm和均方根斜率误差为44 nrad。对于在67 mm×17 mm有效孔径上的二维校正,获得了均方根高度误差为0.8 nm和均方根斜率误差为230 nrad。对于一维情况,这种光学质量与最高等级的商用X射线光学元件相当。