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Performance of cryogenically cooled monochromators at SPring-8

机译:低温冷却单色仪在SPring-8的性能

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摘要

The performance of the SPring-8 cryogenic cooling system was examined extensively, especially, on the features closely related to the actual experimental situations. The cryogenic cooling system has sufficient cooling capability to handle the permitted highest heat load of 478 W at BL29XUL which equips the SPring-8 standard in-vacuum undulator. The effect of the heat load on the beam profile and the rocking curve width was reasonably small. The rocking curve width with Si 333 diffraction at 18.7 keV was close to the theoretical width 0.86". Thus the monochromator conserves the good spatial coherence originating from the small source size of the undulator. Mechanical vibrations at frequencies of 30-100 Hz degraded the parallelism between the two monochromator crystals. The angular width of the mechanical vibration was measured to be 0.2" independent of the heat load and the flow rate of the circulating liquid nitrogen. The output intensity was stable and had no drift under any heat load. On the other hand, it took a few hours before the output energy stabilized, when the heat load was increased from 0.135 to 112 W.
机译:对SPring-8低温冷却系统的性能进行了广泛检查,尤其是在与实际实验情况密切相关的功能上。低温冷却系统具有足够的冷却能力,可处理BL29XUL所允许的最高478 W热负荷,该负荷配备了SPring-8标准真空内波动器。热负荷对梁轮廓和摇摆曲线宽度的影响相当小。 Si 333衍射在18.7 keV时的摇摆曲线宽度接近理论宽度0.86“。因此,单色仪保留了起伏器的小光源尺寸带来的良好空间相干性。频率为30-100 Hz的机械振动会降低平行度在两个单色仪晶体之间,机械振动的角宽度经测量为0.2“,与热负荷和循环液氮的流量无关。输出强度稳定,在任何热负荷下均无漂移。另一方面,当热负荷从0.135 W增加到112 W时,输出能量稳定需要花费几个小时。

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