Svetina Cristian, Cocco Daniele, Mahne Nicola, Raimondi Lorenzo, Ferrari Eugenio, Zangrando Marco
Elettra-Sincrotrone Trieste SCpA, SS 14 km, 163.5 in Area Science Park, Basovizza 34149, Italy.
SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, CA 94025, USA.
J Synchrotron Radiat. 2016 Jan;23(1):35-42. doi: 10.1107/S1600577515021116. Epub 2016 Jan 1.
Measurement of the emission wavelength and the spectral content of the photon radiation is essential information for both machine and experimental physicists at a free-electron laser (FEL) user facility. Knowledge of the photon beam spectral properties is needed during the machine optimization and for performing machine studies (i.e. monitoring the change of the FEL output as a function of the machine parameters). The experimentalists, on the other hand, need to know the photon beam spectral distribution of the source, shot to shot, to discriminate the acquired data. Consequently, the main requirement for the instrument, supposed to obtain this information, is the capability of working on-line and shot-to-shot, with minimal perturbation of the beam delivered to the experimental stations. Starting from the grating fundamental equations, the conceptual design of the FERMI Pulse-Resolved Energy Spectrometer: Transparent and On-line (PRESTO) is presented, explaining the optical design in detail. The performance of PRESTO, in terms of resolving power, efficiency and spectral response, is also discussed. Finally, some useful features beyond the usual measurement of the energy spectrum are reported, as they have been routinely used by both machine and experimental physicists.
测量光子辐射的发射波长和光谱内容对于自由电子激光(FEL)用户设施的机器物理学家和实验物理学家而言都是至关重要的信息。在机器优化过程中以及进行机器研究时(即监测FEL输出随机器参数的变化),都需要了解光子束的光谱特性。另一方面,实验人员需要逐次了解光源的光子束光谱分布,以便区分所采集的数据。因此,对于旨在获取此信息的仪器的主要要求是能够在线逐次工作,同时对输送到实验站的光束的干扰最小。从光栅基本方程出发,介绍了费米脉冲分辨能谱仪:透明在线(PRESTO)的概念设计,并详细解释了光学设计。还讨论了PRESTO在分辨能力、效率和光谱响应方面的性能。最后,报告了一些超出通常能谱测量的有用特性,因为机器物理学家和实验物理学家都经常使用这些特性。