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PILATUS3探测器的束团模式特定速率校正。

Bunch mode specific rate corrections for PILATUS3 detectors.

作者信息

Trueb P, Dejoie C, Kobas M, Pattison P, Peake D J, Radicci V, Sobott B A, Walko D A, Broennimann C

机构信息

DECTRIS Ltd, 5400 Baden, Switzerland.

ETH Zurich, 8093 Zurich, Switzerland.

出版信息

J Synchrotron Radiat. 2015 May;22(3):701-7. doi: 10.1107/S1600577515003288. Epub 2015 Apr 9.

Abstract

PILATUS X-ray detectors are in operation at many synchrotron beamlines around the world. This article reports on the characterization of the new PILATUS3 detector generation at high count rates. As for all counting detectors, the measured intensities have to be corrected for the dead-time of the counting mechanism at high photon fluxes. The large number of different bunch modes at these synchrotrons as well as the wide range of detector settings presents a challenge for providing accurate corrections. To avoid the intricate measurement of the count rate behaviour for every bunch mode, a Monte Carlo simulation of the counting mechanism has been implemented, which is able to predict the corrections for arbitrary bunch modes and a wide range of detector settings. This article compares the simulated results with experimental data acquired at different synchrotrons. It is found that the usage of bunch mode specific corrections based on this simulation improves the accuracy of the measured intensities by up to 40% for high photon rates and highly structured bunch modes. For less structured bunch modes, the instant retrigger technology of PILATUS3 detectors substantially reduces the dependency of the rate correction on the bunch mode. The acquired data also demonstrate that the instant retrigger technology allows for data acquisition up to 15 million photons per second per pixel.

摘要

PILATUS X射线探测器在世界各地的许多同步加速器光束线上运行。本文报道了新一代PILATUS3探测器在高计数率下的特性。对于所有计数探测器,在高光子通量下,测量强度必须针对计数机制的死时间进行校正。这些同步加速器中大量不同的束团模式以及探测器设置的广泛范围,给提供准确校正带来了挑战。为了避免对每种束团模式的计数率行为进行复杂测量,已实施了计数机制的蒙特卡罗模拟,该模拟能够预测任意束团模式和广泛探测器设置下的校正。本文将模拟结果与在不同同步加速器上获取的实验数据进行了比较。结果发现,基于此模拟使用特定于束团模式的校正,对于高光子率和高度结构化的束团模式,可将测量强度的准确度提高多达40%。对于结构较少的束团模式,PILATUS3探测器的即时重触发技术大大降低了速率校正对束团模式的依赖性。所获取的数据还表明,即时重触发技术允许每秒每像素高达1500万个光子的数据采集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4ec/4416683/cb2a7ed81783/s-22-00701-fig1.jpg

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