Tang Kun, Zheng Lei, Zhao Yi Dong, Liu Shu Hu, Ma Chen Yan, Dong Yu Hui
Institute of High Energy Physics, 19B Yuquan Road, Shijingshan District, Beijing, People's Republic of China.
J Synchrotron Radiat. 2019 Sep 1;26(Pt 5):1835-1842. doi: 10.1107/S160057751900715X. Epub 2019 Jul 23.
An optical design study of a bending-magnet beamline, based on multi-bend achromat storage ring lattices, at the High Energy Photon Source, to be built in Beijing, China, is described. The main purpose of the beamline design is to produce a micro-scale beam from a bending-magnet source with little flux loss through apertures. To maximize the flux of the focal spot, the synchrotron source will be 1:1 imaged to a virtual source by a toroidal mirror; a mirror pair will be used to collimate the virtual source into quasi-parallel light which will be refocused by a Kirkpatrick-Baez mirror pair. In the case presented here, a beamline for tender X-rays ranging from 2.1 keV to 7.8 keV, with a spot size of approximately 7 µm (H) × 6 µm (V) and flux up to 2 × 10 photons s, can be achieved for the purpose of X-ray absorption fine-structure (XAFS)-related experiments, such as scanning micro-XAFS and full-field nano-XAFS.
本文描述了基于多弯消色差储存环晶格,为即将在中国北京建造的高能光子源设计的弯铁光束线的光学设计研究。光束线设计的主要目的是利用弯铁源产生微束斑,同时减少通过孔径造成的通量损失。为了使焦斑通量最大化,同步辐射源将通过环形镜1:1成像到一个虚拟源;一对镜子将用于将虚拟源准直为准平行光,该准平行光将由柯克帕特里克-贝兹镜对重新聚焦。在此处介绍的案例中,对于与X射线吸收精细结构(XAFS)相关的实验,如扫描微XAFS和全场纳米XAFS,可实现一条用于2.1 keV至7.8 keV软X射线的光束线,其光斑尺寸约为7 µm(水平)×6 µm(垂直),通量高达2×10 光子/秒。