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Data collection strategies for time-resolved X-ray free-electron laser diffraction, and 2-color methods

机译:时间分辨X射线自由电子激光衍射的数据收集策略和2色方法

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摘要

We compare three schemes for time-resolved X-ray diffraction from protein nanocrystals using an X-ray free-electron laser. We find expressions for the errors in structure factor measurement using the Monte Carlo pump-probe method of data analysis with a liquid jet, the fixed sample pump-probe (goniometer) method (both diffract-and-destroy, and below the safe damage dose), and a proposed two-color method. Here, an optical pump pulse arrives between X-ray pulses of slightly different energies which hit the same nanocrystal, using a weak first X-ray pulse which does not damage the sample. (Radiation damage is outrun in the other cases.) This two-color method, in which separated Bragg spots are impressed on the same detector readout, eliminates stochastic fluctuations in crystal size, shape, and orientation and is found to require two orders of magnitude fewer diffraction patterns than the currently used Monte Carlo liquid jet method, for 1% accuracy. Expressions are given for errors in structure factor measurement for the four approaches, and detailed simulations provided for cathepsin B and IC3 crystals. While the error is independent of the number of shots for the dose-limited goniometer method, it falls off inversely as the square root of the number of shots for the two-color and Monte Carlo methods, with a much smaller pre-factor for the two-color mode, when the first shot is below the damage threshold.
机译:我们比较了三种使用X射线自由电子激光从蛋白质纳米晶体进行时间分辨X射线衍射的方案。我们找到了使用液体喷射的数据分析的蒙特卡洛泵探针法,固定样品泵探针(测角计)法(包括衍射和破坏法且均在安全损伤剂量以下)测量结构因子时的误差表达式。 ),并提出了两种颜色的方法。在此,使用不破坏样品的弱的第一X射线脉冲,光泵浦脉冲到达撞击相同纳米晶体的能量稍有不同的X射线脉冲之间。 (在其他情况下,辐射损伤会超出限制。)这种双色方法(在同一检测器读数上施加了分开的布拉格斑点)消除了晶体尺寸,形状和取向的随机波动,并且发现需要两个数量级与目前使用的蒙特卡洛液体喷射方法相比,衍射图样更少,精度为1%。给出了四种方法的结构因子测量误差的表达式,并提供了针对组织蛋白酶B和IC3晶体的详细模拟。虽然误差与剂量限制测角仪方法的拍摄数量无关,但对于双色和蒙特卡罗方法,其误差与拍摄数量的平方根成反比,而误差较小。双色模式,当第一枪低于伤害阈值时。

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