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NSLS-II Biomedical Beamlines for Macromolecular Crystallography, FMX and AMX, and for X-ray Scattering, LIX: Current Developments

机译:NSLS-II生物医学束线,用于大分子晶体学,FMX和AMX,以及用于X射线散射,LIX:当前的发育

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We present the current status of development of the two macromolecular crystallography (MX) beamlines, FMX and AMX, and the X-ray scattering beamline LIX, at the National Synchrotron Light Source-II (NSLS-II) [1]. Together, FMX and AMX will cover a broad range of use cases from serial crystallography on micron sized crystals, to very large unit cell complexes, to rapid sample screening, e.g. for the always-hard-to-grow membrane proteins and for ligand binding studies. The LIX beamline will support a variety of X-ray scattering measurements for studies on proteins in solution, lipid membranes and biological tissues. We have performed Synchrotron Radiation Workshop (SRW) [2] and Shadow[3] simulations to help select optimal methods to modify the size of the beam easily and smoothly at both FMX and AMX. The very low emittance of the NSLS-II storage ring and the resulting low divergence of the X-ray beam, as well as the long optical path lengths in the photon delivery systems lead to stringent requirements e.g. for vibrational stability and mirror quality. We discuss beamline design considerations addressing these challenges, such as combining mirror optics with compound refractive lenses (CRLs).
机译:我们提出两个大分子晶体(MX)束线,FMX和AMX和X射线散射光束线LIX的发展的当前状态,在国家同步加速器光源-II(NSLS-II)[1]。 FMX和AMX在一起将涵盖微米尺寸晶体的串联晶体中的广泛用例,到非常大的单位细胞复合物,以快速样品筛选,例如,对于始终硬质膜蛋白和配体结合研究。 LIX光束线将支持各种X射线散射测量,用于研究溶液中蛋白质,脂质膜和生物组织的研究。我们已经进行了同步辐射研讨会(SRW)[2]和影子[3]模拟,以帮助选择最佳方法,以便在FMX和AMX中轻松且平稳地修改光束的大小。 NSLS-II储存环的非常低的磁阻和X射线束的低发散,以及光子输送系统中的长光路长度导致了严格的要求。用于振动稳定性和镜子质量。我们讨论了解决这些挑战的Beamline设计考虑,例如将镜子光学与复合折射镜头(CRL)组合。

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