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台湾光源生物小角 X 射线散射光束线的光学设计与性能。

Optical design and performance of the biological small-angle X-ray scattering beamline at the Taiwan Photon Source.

机构信息

National Synchrotron Radiation Research Center, Hsinchu Science Park, Hsinchu 30076, Taiwan.

出版信息

J Synchrotron Radiat. 2021 Nov 1;28(Pt 6):1954-1965. doi: 10.1107/S1600577521009565. Epub 2021 Oct 18.

Abstract

The optical design and performance of the recently opened 13A biological small-angle X-ray scattering (SAXS) beamline at the 3.0 GeV Taiwan Photon Source of the National Synchrotron Radiation Research Center are reported. The beamline is designed for studies of biological structures and kinetics in a wide range of length and time scales, from angstrom to micrometre and from microsecond to minutes. A 4 m IU24 undulator of the beamline provides high-flux X-rays in the energy range 4.0-23.0 keV. MoBC double-multilayer and Si(111) double-crystal monochromators (DMM/DCM) are combined on the same rotating platform for a smooth rotation transition from a high-flux beam of ∼4 × 10 photons s to a high-energy-resolution beam of ΔE/E ≃ 1.5 × 10; both modes share a constant beam exit. With a set of Kirkpatrick-Baez (KB) mirrors, the X-ray beam is focused to the farthest SAXS detector position, 52 m from the source. A downstream four-bounce crystal collimator, comprising two sets of Si(311) double crystals arranged in a dispersive configuration, optionally collimate the DCM (vertically diffracted) beam in the horizontal direction for ultra-SAXS with a minimum scattering vector q down to 0.0004 Å, which allows resolving ordered d-spacing up to 1 µm. A microbeam, of 10-50 µm beam size, is tailored by a combined set of high-heat-load slits followed by micrometre-precision slits situated at the front-end 15.5 m position. The second set of KB mirrors then focus the beam to the 40 m sample position, with a demagnification ratio of ∼1.5. A detecting system comprising two in-vacuum X-ray pixel detectors is installed to perform synchronized small- and wide-angle X-ray scattering data collections. The observed beamline performance proves the feasibility of having compound features of high flux, microbeam and ultra-SAXS in one beamline.

摘要

报道了位于国家同步辐射研究中心 3.0GeV 同步光子源的 13A 生物小角 X 射线散射(SAXS)光束线的光学设计和性能。该光束线旨在研究生物结构和动力学,涵盖从埃到微米以及从微秒到分钟的广泛长度和时间尺度。该光束线的一个 4 米 IU24 波荡器在 4.0-23.0keV 的能量范围内提供高通量 X 射线。MoBC 双层膜和 Si(111)双晶单色器(DMM/DCM)组合在同一旋转平台上,可实现从约 4×10 光子 s 的高通量光束到ΔE/E ≃ 1.5×10 的高能分辨率光束的平稳旋转过渡;两种模式共享恒定的光束出射。利用一组 Kirkpatrick-Baez(KB)反射镜,将 X 射线聚焦到离光源最远的 SAXS 探测器位置,距离为 52 米。下游的四镜晶体准直器由两组以色散配置排列的 Si(311)双晶组成,可选择将 DCM(垂直衍射)光束在水平方向准直,用于超小角 X 射线散射,最小散射矢量 q 低至 0.0004Å,这允许分辨高达 1μm 的有序 d 间距。通过一组高热负载狭缝和位于前端 15.5 米位置的微米级精度狭缝,将 10-50μm 的微束尺寸进行剪裁。然后,第二组 KB 反射镜将光束聚焦到 40m 的样品位置,放大率约为 1.5。安装了一个由两个真空 X 射线像素探测器组成的探测系统,以执行同步小角和广角 X 射线散射数据采集。观察到的光束线性能证明了在一条光束线上同时具有高通量、微束和超小角 X 射线散射的复合特性的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cae/8570220/4ac0f261a1ca/s-28-01954-fig1.jpg

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