Di Fraia Michele, De Sio Antonio, Antonelli Matias, Nesti Renzo, Panella Dario, Menk Ralf H, Cautero Giuseppe, Coreno Marcello, Catone Daniele, Zema Nicola, Callegari Carlo, Pace Emanuele
Elettra - Sincrotrone Trieste S.C.p.A., Basovizza, Trieste, Italy.
Dipartimento di Fisica e Astronomia, Universitá di Firenze, Firenze, Italy.
J Synchrotron Radiat. 2019 Mar 1;26(Pt 2):386-392. doi: 10.1107/S1600577519000791. Epub 2019 Feb 13.
The improved performance of third-generation light sources and the advent of next-generation synchrotron radiation facilities require the use of extremely precise monitoring of the main photon-beam parameters, such as position, absolute and relative intensity, and temporal structure. These parameters, and associated real-time feedbacks, are fundamental at the beamline control level and at the machine control level, to improve the stability of the photon beams and to provide bunch-to-bunch quantitative information. Fast response time, high radiation hardness and visible-blind response are main features of photon-beam monitors for VUV and X-ray synchrotron radiation beamlines; hence diamond-based detectors are outstanding candidates. Here, results are presented of an extensive measurement campaign aiming at optimizing the capabilities of diamond detectors to discern time structures below the 100 ps timescale. A custom-built device has been fabricated and tested at the Italian Synchrotron Radiation Laboratory Elettra in Trieste. The results obtained show that diamond is an excellent material for ultra-fast photon pulses with picosecond time resolution; finally the possibilities for application at free-electron laser sources are discussed.
第三代光源性能的提升以及下一代同步辐射设施的出现,要求对主要光子束参数进行极其精确的监测,如位置、绝对和相对强度以及时间结构。这些参数以及相关的实时反馈,在光束线控制层面和机器控制层面对于提高光子束的稳定性以及提供束团间定量信息至关重要。快速响应时间、高辐射硬度和可见盲响应是用于真空紫外和X射线同步辐射光束线的光子束监测器的主要特性;因此基于金刚石的探测器是杰出的候选者。在此,展示了一项广泛测量活动的结果,旨在优化金刚石探测器辨别低于100皮秒时间尺度的时间结构的能力。在的里雅斯特的意大利同步辐射实验室埃莱特拉制造并测试了一个定制装置。所获得的结果表明,金刚石是用于具有皮秒时间分辨率的超快光子脉冲的优异材料;最后讨论了在自由电子激光源上的应用可能性。