Sjöblom Peter, Todorescu Gabriela, Urpelainen Samuli
MAX IV Laboratory, Fotongatan 2, 225 94 Lund, Sweden.
J Synchrotron Radiat. 2020 Mar 1;27(Pt 2):272-283. doi: 10.1107/S1600577520000843. Epub 2020 Feb 19.
MAX IV is a fourth-generation, or diffraction-limited, synchrotron light source with a number of state-of-the-art beamlines. The performance of a beamline is, to a high degree, set by the energy resolution it can achieve, which in turn is governed to a large extent by the monochromator. During the design phase of a monochromator, the mechanical requirements must be fully understood and met with margin. During commissioning, the performance must be verified and optimized. In this paper, six soft X-ray monochromators at MAX IV beamlines (Bloch, Veritas, HIPPIE, SPECIES, FinEstBeAMS and SoftiMAX) are examined with a focus on their resolving power, energy range and the time required to change measurement range, as those parameters are dependent on each other. The monochromators have a modern commercial design, planned and developed in close collaboration with the vendors. This paper aims to present the current status of the commissioning at MAX IV with emphasis on elucidating the mechanical limitations on the performance of the monochromators. It contains analysis of the outcome and our approach to achieve fast and high-resolution monochromators.
MAX IV是一台第四代,即衍射极限的同步辐射光源,拥有多条先进的光束线。光束线的性能在很大程度上由其所能达到的能量分辨率决定,而能量分辨率又在很大程度上由单色仪控制。在单色仪的设计阶段,必须充分理解并留有一定余量地满足机械要求。在调试期间,必须对性能进行验证和优化。本文研究了MAX IV光束线(布洛赫、真理号、希皮、物种、FinEstBeAMS和SoftiMAX)上的六个软X射线单色仪,重点关注它们的分辨能力、能量范围以及改变测量范围所需的时间,因为这些参数相互依赖。这些单色仪采用了现代商业设计,是与供应商密切合作规划和开发的。本文旨在介绍MAX IV的调试现状,重点是阐明单色仪性能的机械限制。它包含了对结果的分析以及我们实现快速高分辨率单色仪的方法。