Compact single-shot soft X-ray photon spectrometer for free-electron laser diagnostics

Author:

Larsen Kirk A.12,Borne Kurtis3,Obaid Razib1,Kamalov Andrei1,Liu Yusong12,Cheng Xinxin1ORCID,James Justin1,Driver Taran1,Li Kenan1ORCID,Liu Yanwei1ORCID,Sakdinawat Anne1,David Christian4,Wolf Thomas J. A.12,Cryan James P.12,Walter Peter15,Lin Ming-Fu1ORCID

Affiliation:

1. SLAC National Accelerator Laboratory

2. Stanford PULSE Institute

3. Kansas State University

4. Paul Scherrer Institute

5. TAU Systems

Abstract

The photon spectrum from free-electron laser (FEL) light sources offers valuable information in time-resolved experiments and machine optimization in the spectral and temporal domains. We have developed a compact single-shot photon spectrometer to diagnose soft X-ray spectra. The spectrometer consists of an array of off-axis Fresnel zone plates (FZP) that act as transmission-imaging gratings, a Ce:YAG scintillator, and a microscope objective to image the scintillation target onto a two-dimensional imaging detector. This spectrometer operates in segmented energy ranges which covers tens of electronvolts for each absorption edge associated with several atomic constituents: carbon, nitrogen, oxygen, and neon. The spectrometer’s performance is demonstrated at a repetition rate of 120 Hz, but our detection scheme can be easily extended to 200 kHz spectral collection by employing a fast complementary metal oxide semiconductor (CMOS) line-scan camera to detect the light from the scintillator. This compact photon spectrometer provides an opportunity for monitoring the spectrum downstream of an endstation in a limited space environment with sub-electronvolt energy resolution.

Funder

Basic Energy Sciences

Workforce Development for Teachers and Scientists

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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