Shastri S D, Fezzaa K, Mashayekhi A, Lee W K, Fernandez P B, Lee P L
Advanced Photon Source, Argonne National Laboratory, Argonne, IL 60439, USA.
J Synchrotron Radiat. 2002 Sep 1;9(Pt 5):317-22. doi: 10.1107/s0909049502009986. Epub 2002 Aug 31.
A liquid-nitrogen-cooled monochromator for high-energy X-rays consisting of two bent Si(111) Laue crystals adjusted to sequential Rowland conditions has been in operation for over two years at the SRI-CAT sector 1 undulator beamline of the Advanced Photon Source (APS). It delivers over ten times more flux than a flat-crystal monochromator does at high energies, without any increase in energy width (DeltaE/E approximately 10(-3)). Cryogenic cooling permits optimal flux, avoiding a sacrifice from the often employed alternative technique of filtration - a technique less effective at sources like the 7 GeV APS, where considerable heat loads can be deposited by high-energy photons, especially at closed undulator gaps. The fixed-offset geometry provides a fully tunable in-line monochromatic beam. In addition to presenting the optics performance, unique crystal design and stable bending mechanism for a cryogenically cooled crystal under high heat load, the bending radii adjustment procedures are described.
一种用于高能X射线的液氮冷却单色仪,由两块弯曲的Si(111)劳厄晶体组成,它们被调整到连续的罗兰条件,已在先进光子源(APS)的SRI-CAT 1号扇区波荡器光束线上运行了两年多。在高能量下,它提供的通量比平晶单色仪多十倍以上,而能量宽度没有任何增加(ΔE/E约为10^(-3))。低温冷却可实现最佳通量,避免了经常采用的过滤替代技术带来的牺牲——在7 GeV的APS等光源处,这种技术效果较差,因为高能光子会沉积相当大的热负荷,尤其是在封闭的波荡器间隙处。固定偏移几何结构提供了一个完全可调的在线单色光束。除了介绍光学性能、独特的晶体设计以及高热负荷下低温冷却晶体的稳定弯曲机制外,还描述了弯曲半径的调整程序。