Zhang Qingteng, Dufresne Eric M, Nakaye Yasukazu, Jemian Pete R, Sakumura Takuto, Sakuma Yasutaka, Ferrara Joseph D, Maj Piotr, Hassan Asra, Bahadur Divya, Ramakrishnan Subramanian, Khan Faisal, Veseli Sinisa, Sandy Alec R, Schwarz Nicholas, Narayanan Suresh
X-ray Science Division, Argonne National Laboratory, 9700 South Cass Avenue, Lemont, IL 60439, USA.
XRD Design and Engineering Department, Rigaku Corporation, 3-9-12 Matsubara-cho, Akishima-shi, Tokyo, Japan.
J Synchrotron Radiat. 2021 Jan 1;28(Pt 1):259-265. doi: 10.1107/S1600577520014319.
The performance of the new 52 kHz frame rate Rigaku XSPA-500k detector was characterized on beamline 8-ID-I at the Advanced Photon Source at Argonne for X-ray photon correlation spectroscopy (XPCS) applications. Due to the large data flow produced by this detector (0.2 PB of data per 24 h of continuous operation), a workflow system was deployed that uses the Advanced Photon Source data-management (DM) system and high-performance software to rapidly reduce area-detector data to multi-tau and two-time correlation functions in near real time, providing human-in-the-loop feedback to experimenters. The utility and performance of the workflow system are demonstrated via its application to a variety of small-angle XPCS measurements acquired from different detectors in different XPCS measurement modalities. The XSPA-500k detector, the software and the DM workflow system allow for the efficient acquisition and reduction of up to ∼10 area-detector data frames per day, facilitating the application of XPCS to measuring samples with weak scattering and fast dynamics.
新型52 kHz帧率的理学XSPA-500k探测器的性能,在阿贡国家实验室先进光子源的8-ID-I光束线上针对X射线光子相关光谱学(XPCS)应用进行了表征。由于该探测器产生的数据流很大(连续运行24小时会产生0.2 PB的数据),因此部署了一个工作流程系统,该系统使用先进光子源数据管理(DM)系统和高性能软件,将近实时地快速将面探测器数据缩减为多弛豫时间和双时相关函数,并为实验人员提供人工介入的反馈。通过将该工作流程系统应用于从不同探测器以不同XPCS测量模式获取的各种小角XPCS测量中,展示了该工作流程系统的实用性和性能。XSPA-500k探测器、软件和DM工作流程系统,每天能够高效采集和缩减多达约10个面探测器数据帧,便于将XPCS应用于测量具有弱散射和快速动力学特性的样品。