CAMP@FLASH: an end-station for imaging, electron- and ion-spectroscopy, and pump-probe experiments at the FLASH free-electron laser.

CAMP@FLASH: an end-station for imaging, electron- and ion-spectroscopy, and pump-probe experiments at the FLASH free-electron laser.
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DOI:
10.1107/s1600577518008585
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发表时间:
2018-09-01
影响因子:
2.5
通讯作者:
Rolles D
Rolles D
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
Erk B;Müller JP;Bomme C;Boll R;Brenner G;Chapman HN;Correa J;Düsterer S;Dziarzhytski S;Eisebitt S;Graafsma H;Grunewald S;Gumprecht L;Hartmann R;Hauser G;Keitel B;von Korff Schmising C;Kuhlmann M;Manschwetus B;Mercadier L;Müller E;Passow C;Plönjes E;Ramm D;Rompotis D;Rudenko A;Rupp D;Sauppe M;Siewert F;Schlosser D;Strüder L;Swiderski A;Techert S;Tiedtke K;Tilp T;Treusch R;Schlichting I;Ullrich J;Moshammer R;Möller T;Rolles D

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DESY的FLASH自由电子激光设备的光束线BL1升级了新的传输和聚焦光学装置,用于安装新的永久性CAMP端站,这是一种多用途仪器,用于优化电子和离子光谱,成像和泵浦探针实验。概述了这种新型端站的布局、光束传输、聚焦能力和实验可能性,以及其调试和首次实验的结果。DESY的FLASH自由电子激光设备的非单色光束线BL1用新的传输和聚焦光学装置进行了升级,并安装了一个新的永久端站CAMP。这种多用途仪器是优化的电子和离子光谱,成像和泵探针实验在自由电子激光器。它可以配备各种电子和离子光谱仪,以及大面积单光子计数pccd x射线探测器,从而实现从原子,分子和簇物理到材料和能源科学,化学和生物学的广泛实验。在这里,概述了这种新型端站的布局、光束传输和聚焦能力、实验可能性,以及它的调试结果。
Beamline BL1 at the FLASH free-electron laser facility at DESY was upgraded with new transport and focusing optics for the installation of the new permanent CAMP end-station, a multi-purpose instrument optimized for electron- and ion-spectroscopy, imaging and pump–probe experiments. An overview of the layout, beam transport, focusing capabilities, and experimental possibilities of this new end-station, as well as results from its commissioning and first experiments, are presented. The non-monochromatic beamline BL1 at the FLASH free-electron laser facility at DESY was upgraded with new transport and focusing optics, and a new permanent end-station, CAMP, was installed. This multi-purpose instrument is optimized for electron- and ion-spectroscopy, imaging and pump–probe experiments at free-electron lasers. It can be equipped with various electron- and ion-spectrometers, along with large-area single-photon-counting pnCCD X-ray detectors, thus enabling a wide range of experiments from atomic, molecular, and cluster physics to material and energy science, chemistry and biology. Here, an overview of the layout, the beam transport and focusing capabilities, and the experimental possibilities of this new end-station are presented, as well as results from its commissioning.