论文标题

欧洲XFEL小型量子系统仪器的1百万像素PNCCD检测器:系统和操作方面

The 1-Megapixel pnCCD Detector for the Small Quantum Systems Instrument at the European XFEL: System and Operation Aspects

论文作者

Kuster, Markus, Ahmed, Karim, Ballak, Kai-Erik, Danilevski, Cyril, Ekmedžić, Marko, Fernandes, Bruno, Gessler, Patrick, Hartmann, Robert, Hauf, Steffen, Holl, Peter, Meyer, Michael, Montaño, Jacobo, Münnich, Astrid, Ovcharenko, Yevheniy, Rennhack, Nils, Rüter, Tonn, Rupp, Daniela, Schlosser, Dieter, Setoodehnia, Kiana, Schmitt, Rüdiger, Strüder, Lothar, Tanyag, Rico Mayro P., Ulmer, Anatoli, Yousef, Hazem

论文摘要

X射线自由电子激光器在过去十年中可用,例如欧洲Xfel(Euxfel)对其仪器提出了很高的要求。特别是在低于$ 1 \,\ text {kev} $的低光子能量下,具有高灵敏度的检测器,因此需要低噪声和高量子效率,以使设施使用者能够充分利用光子源的科学潜力。在Euxfel的小型量子系统(SQS)仪器的纳米尺寸量子系统(NQS)站的1兆像素PNCCD检测器已安装并进行了委托用于纳米尺寸量子系统(NQS)站的成像应用程序的成像应用。该仪器目前在能源范围内运行$ 0.5 $至3 \,\ \ text {kev} $,而NQS电台则设计用于调查强烈的FEL脉冲与簇,纳米粒子和小型生物粒子的相互作用,并通过将光电离子和光电等光谱与共同光谱与共同光谱与合作社的扩散进行组合。成像检测器的核心是PN型电荷耦合器件(PNCCD),其像素螺距为$ 75 \,μ\ text {m} \ times 75 \,μ\ text {m} $。根据实验方案,PNCCD可以使单个光子成像,这要归功于其非常低的电子噪声$ 3 $ e $^ - $和高量子效率。在这里,我们介绍了Euxfel PNCCD探测器的概述,以及2019年6月在SQS实验上进行调试和首次用户操作的结果。探测器设计和能力的详细描述,其在Euxfel机械上的实现,以及在机械上的实现,以及对控件的实现以及对数据校正的范围以及对用户的计划和分析的实验的有用,并为您提供了有用的eux APEF APER APEF,并分析了EUX的ABEN APER APER APEF,belther和Analy Aneverim abe belthe Asef and abe a Belth其他FELS的端部。

The X-ray free-electron lasers that became available during the last decade, like the European XFEL (EuXFEL), place high demands on their instrumentation. Especially at low photon energies below $1\,\text{keV}$, detectors with high sensitivity, and consequently low noise and high quantum efficiency, are required to enable facility users to fully exploit the scientific potential of the photon source. A 1-Megapixel pnCCD detector with a $1024\times 1024$ pixel format has been installed and commissioned for imaging applications at the Nano-Sized Quantum System (NQS) station of the Small Quantum System (SQS) instrument at EuXFEL. The instrument is currently operating in the energy range between $0.5$ and $3\,\text{keV}$ and the NQS station is designed for investigations of the interaction of intense FEL pulses with clusters, nano-particles and small bio-molecules, by combining photo-ion and photo-electron spectroscopy with coherent diffraction imaging techniques. The core of the imaging detector is a pn-type charge coupled device (pnCCD) with a pixel pitch of $75\,μ\text{m}\times 75\,μ\text{m}$. Depending on the experimental scenario, the pnCCD enables imaging of single photons thanks to its very low electronic noise of $3$e$^-$ and high quantum efficiency. Here we present an overview on the EuXFEL pnCCD detector and the results from the commissioning and first user operation at the SQS experiment in June 2019. The detailed descriptions of the detector design and capabilities, its implementation at EuXFEL both mechanically and from the controls side as well as important data correction steps aim to provide useful background for users planning and analyzing experiments at EuXFEL and may serve as a benchmark for comparing and planning future endstations at other FELs.

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