Nakaye Yasukazu, Sakumura Takuto, Sakuma Yasutaka, Mikusu Satoshi, Dawiec Arkadiusz, Orsini Fabienne, Grybos Pawel, Szczygiel Robert, Maj Piotr, Ferrara Joseph D, Taguchi Takeyoshi
Rigaku Corporation, 3-9-12 Matsubara-cho, Akishima-shi, Tokyo 196-8666, Japan.
Detector Group, Synchrotron SOLEIL, L'Orme des Merisiers, Saint Aubin - BP 48, Gif-sur-Yvette 91192, France.
J Synchrotron Radiat. 2021 Mar 1;28(Pt 2):439-447. doi: 10.1107/S1600577520016665. Epub 2021 Feb 10.
Hybrid photon counting (HPC) detectors are widely used at both synchrotron facilities and in-house laboratories. The features of HPC detectors, such as no readout noise, high dynamic range, high frame rate, excellent point spread function, no blurring etc. along with fast data acquisition, provide a high-performance detector with a low detection limit and high sensitivity. Several HPC detector systems have been developed around the world. A number of them are commercially available and used in academia and industry. One of the important features of an HPC detector is a fast readout speed. Most HPC detectors can easily achieve over 1000 frames s, one or two orders of magnitude faster than conventional CCD detectors. Nevertheless, advanced scientific challenges require ever faster detectors in order to study dynamical phenomena in matter. The XSPA-500k detector can achieve 56 kframes s continuously, without dead-time between frames. Using `burst mode', a special mode of the UFXC32k ASIC, the frame rate reaches 1 000 000 frames s. XSPA-500k was fully evaluated at the Metrology beamline at Synchrotron SOLEIL (France) and its readout speed was confirmed by tracking the synchrotron bunch time structure. The uniformity of response, modulation transfer function, linearity, energy resolution and other performance metrics were also verified either with fluorescence X-rays illuminating the full area of the detector or with the direct beam.
混合光子计数(HPC)探测器在同步加速器设施和内部实验室中都有广泛应用。HPC探测器的特性,如无读出噪声、高动态范围、高帧率、出色的点扩散函数、无模糊等,再加上快速的数据采集,使其成为一种具有低检测限和高灵敏度的高性能探测器。世界各地已经开发了几种HPC探测器系统。其中一些已商业化,在学术界和工业界得到应用。HPC探测器的一个重要特性是快速读出速度。大多数HPC探测器能够轻松实现每秒1000帧以上的速度,比传统的电荷耦合器件(CCD)探测器快一到两个数量级。然而,面对先进的科学挑战,需要更快的探测器来研究物质中的动态现象。XSPA - 500k探测器能够连续实现每秒56000帧,帧与帧之间没有死时间。使用“突发模式”(UFXC32k专用集成电路的一种特殊模式)时,帧率可达每秒1000000帧。XSPA - 500k在法国同步加速器SOLEIL的计量光束线上进行了全面评估,通过跟踪同步加速器束团时间结构确认了其读出速度。还通过用荧光X射线照射探测器的整个区域或使用直接光束,验证了响应均匀性、调制传递函数、线性度、能量分辨率和其他性能指标。