A non-invasive online photoionization spectrometer for FLASH2

Author:

Braune Markus,Brenner Günter,Dziarzhytski Siarhei,Juranić Pavle,Sorokin Andrey,Tiedtke Kai

Abstract

The stochastic nature of the self-amplified spontaneous emission (SASE) process of free-electron lasers (FELs) effects pulse-to-pulse fluctuations of the radiation properties, such as the photon energy, which are determinative for processes of photon–matter interactions. Hence, SASE FEL sources pose a great challenge for scientific investigations, since experimenters need to obtain precise real-time feedback of these properties for each individual photon bunch for interpretation of the experimental data. Furthermore, any device developed to deliver the according information should not significantly interfere with or degrade the FEL beam. Regarding the spectral properties, a device for online monitoring of FEL wavelengths has been developed for FLASH2, which is based on photoionization of gaseous targets and the measurements of the corresponding electron and ion time-of-flight spectra. This paper presents experimental studies and cross-calibration measurements demonstrating the viability of this online photoionization spectrometer.

Publisher

International Union of Crystallography (IUCr)

Subject

Instrumentation,Nuclear and High Energy Physics,Radiation

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1. Development and commissioning of a broadband online X-ray spectrometer for the SXFEL Facility;Journal of Synchrotron Radiation;2024-07-29

2. Comparison of wavefront sensing and ablation imprinting for FEL focus diagnostics at FLASH2;Optics Express;2024-05-28

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