Kim Jungho, Shi Xianbo, Casa Diego, Qian Jun, Huang XianRong, Gog Thomas
Advanced Photon Source, Argonne National Laboratory, 9700 South Cass Avenue, Argonne, IL 60439, USA.
J Synchrotron Radiat. 2016 Jul;23(Pt 4):880-6. doi: 10.1107/S1600577516007426. Epub 2016 Jun 1.
Advances in resonant inelastic X-ray scattering (RIXS) have come in lockstep with improvements in energy resolution. Currently, the best energy resolution at the Ir L3-edge stands at ∼25 meV, which is achieved using a diced Si(844) spherical crystal analyzer. However, spherical analyzers are limited by their intrinsic reflection width. A novel analyzer system using multiple flat crystals provides a promising way to overcome this limitation. For the present design, an energy resolution at or below 10 meV was selected. Recognizing that the angular acceptance of flat crystals is severely limited, a collimating element is essential to achieve the necessary solid-angle acceptance. For this purpose, a laterally graded, parabolic, multilayer Montel mirror was designed for use at the Ir L3-absorption edge. It provides an acceptance larger than 10 mrad, collimating the reflected X-ray beam to smaller than 100 µrad, in both vertical and horizontal directions. The performance of this mirror was studied at beamline 27-ID at the Advanced Photon Source. X-rays from a diamond (111) monochromator illuminated a scattering source of diameter 5 µm, generating an incident beam on the mirror with a well determined divergence of 40 mrad. A flat Si(111) crystal after the mirror served as the divergence analyzer. From X-ray measurements, ray-tracing simulations and optical metrology results, it was established that the Montel mirror satisfied the specifications of angular acceptance and collimation quality necessary for a high-resolution RIXS multi-crystal analyzer system.
共振非弹性X射线散射(RIXS)的进展与能量分辨率的提高同步。目前,铱L3边的最佳能量分辨率约为25毫电子伏特,这是使用切割后的Si(844)球形晶体分析仪实现的。然而,球形分析仪受到其固有反射宽度的限制。一种使用多个平面晶体的新型分析仪系统为克服这一限制提供了一种很有前景的方法。对于当前设计,选择了10毫电子伏特及以下的能量分辨率。认识到平面晶体的角接收范围受到严重限制,准直元件对于实现必要的立体角接收至关重要。为此,设计了一种横向渐变的抛物面多层蒙特尔镜,用于铱L3吸收边。它在垂直和水平方向上提供大于10毫弧度的接收范围,将反射的X射线束准直到小于100微弧度。在先进光子源的27-ID光束线上研究了这种镜子的性能。来自金刚石(111)单色仪的X射线照射直径为5微米的散射源,在镜子上产生发散角确定为40毫弧度的入射光束。镜子后面的平面Si(111)晶体用作发散分析仪。通过X射线测量、光线追踪模拟和光学计量结果,确定蒙特尔镜满足高分辨率RIXS多晶体分析仪系统所需的角接收范围和准直质量规格。