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首次利用在索莱伊同步加速器研发的二维混合像素探测器进行泵浦-探测-探测硬X射线衍射实验。

First pump-probe-probe hard X-ray diffraction experiments with a 2D hybrid pixel detector developed at the SOLEIL synchrotron.

作者信息

Bachiller-Perea Diana, Abiven Yves Marie, Bisou Jérôme, Fertey Pierre, Grybos Pawel, Jarnac Amélie, Kanouté Brahim, Koziol Anna, Langlois Florent, Laulhé Claire, Legrand Fabien, Maj Piotr, Menneglier Claude, Noureddine Arafat, Orsini Fabienne, Thibaux Gauthier, Dawiec Arkadiusz

机构信息

SOLEIL Synchrotron, L'Orme des Merisiers, Saint-Aubin - BP 48, 91190 Gif-sur-Yvette Cedex, France.

Department of Measurement and Electronics, AGH University of Science and Technology, av. A. Mickiewicza 30, Krakow 30-059, Poland.

出版信息

J Synchrotron Radiat. 2020 Mar 1;27(Pt 2):340-350. doi: 10.1107/S1600577520000612. Epub 2020 Feb 19.

Abstract

A new photon-counting camera based on hybrid pixel technology has been developed at the SOLEIL synchrotron, making it possible to implement pump-probe-probe hard X-ray diffraction experiments for the first time. This application relies on two specific advantages of the UFXC32k readout chip, namely its high frame rate (50 kHz) and its high linear count rate (2.6 × 10 photons s pixel). The project involved the conception and realization of the chips and detector carrier board, the data acquisition system, the server with its specific software, as well as the mechanical and cooling systems. This article reports on in-laboratory validation tests of the new detector, as well as on tests performed at the CRISTAL beamline within the targeted experimental conditions. A benchmark experiment was successfully performed, showing the advantages of the pump-probe-probe scheme in correcting for drifts of the experimental conditions.

摘要

法国索雷尔同步加速器研发出了一款基于混合像素技术的新型光子计数相机,首次实现了泵浦-探测-探测硬X射线衍射实验。该应用依赖于UFXC32k读出芯片的两个特定优势,即其高帧率(50 kHz)和高线性计数率(2.6×10 光子·秒·像素)。该项目涉及芯片和探测器载板的设计与实现、数据采集系统、配备特定软件的服务器以及机械和冷却系统。本文报道了新探测器的实验室验证测试,以及在目标实验条件下于CRISTAL光束线进行的测试。成功开展了一项基准实验,展示了泵浦-探测-探测方案在校正实验条件漂移方面的优势。

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