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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Photon-beam stabilization systems for the MX2 beamline at LNLS
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Photon-beam stabilization systems for the MX2 beamline at LNLS

机译:LNLS MX2光束线的光子束稳定系统

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The MX2, a wiggler beamline dedicated to macromolecular crystallography, started routinely operating for users in 2007. Late in the commissioning phase, several experiments started to be conducted in order to characterize photon-beam stability. At that time, position movements of typically 150 μm per shift and severe energy drifts reaching 0.8 eV/h were observed at sample position, which would certainly spoil the MAD experiments. The severity of this scenario for a recently delivered beamline led us to install temperature sensors and inclinometers along the optical hutch, besides performing exhaustive tests to clarify the disturbance paths. To elucidate the main instability mechanisms, three control systems for beam stabilization were considered—position stabilization, ground motion canceling and, the most important of all, temperature control for the optical hutch. Results and perspectives are presented hereafter.
机译:MX2是专门用于高分子晶体学的摆动光束线,于2007年开始为用户提供常规服务。在调试阶段后期,为了表征光子束的稳定性,开始进行了一些实验。当时,在样品位置观察到通常每位移150μm的位置运动以及达到0.8 eV / h的严重能量漂移,这肯定会破坏MAD实验。对于最近交付的光束线,这种情况的严重性导致我们除了要进行详尽的测试以弄清干扰路径外,还沿着光学箱安装了温度传感器和测斜仪。为了阐明主要的不稳定性机理,考虑了三个用于光束稳定的控制系统-位置稳定,对地运动抵消以及最重要的是光学储藏箱的温度控制。结果和观点在下文中给出。

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