Lee W K, Fernandez P, Mills D M
Advanced Photon Source, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, IL 60439, USA.
J Synchrotron Radiat. 2000 Jan 1;7(Pt 1):12-7. doi: 10.1107/S0909049599014478.
The successful use of cryogenically cooled silicon monochromators at third-generation synchrotron facilities is well documented. At the Advanced Photon Source (APS) it has been shown that, at 100 mA operation with the standard APS undulator A, the cryogenically cooled silicon monochromator performs very well with minimal (<2 arcsec) or no observable thermal distortions. However, to date there has not been any systematic experimental study on the performance limits of this approach. This paper presents experimental results on the performance limits of these directly cooled crystals. The results show that if the beam is limited to the size of the radiation central cone then, at the APS, the crystal will still perform well at twice the present 100 mA single 2.4 m-long 3.3 cm-period undulator heat load. However, the performance would degrade rapidly if a much larger incident white-beam size is utilized.
低温冷却硅单色仪在第三代同步加速器设施中的成功应用已有充分记录。在先进光子源(APS)中,已经表明,在使用标准APS波荡器A以100 mA运行时,低温冷却硅单色仪表现出色,热畸变极小(<2 弧秒)或无明显热畸变。然而,迄今为止,尚未对该方法的性能极限进行任何系统的实验研究。本文给出了这些直接冷却晶体性能极限的实验结果。结果表明,如果光束限制在辐射中心锥的尺寸内,那么在APS中,晶体在当前100 mA单个2.4 m长、3.3 cm周期波荡器热负载的两倍时仍将表现良好。然而,如果使用大得多的入射白光尺寸,性能将迅速下降。