High-resolution, high-transmission soft x-ray spectrometer for the study of biological samples

We present a variable line-space grating spectrometer for soft x-rays that covers the photon energy range between 130 and 650 eV. The optical design is based on the Hettrick-Underwood principle and tailored to synchrotron-based studies of radiation-sensitive biological samples. The spectrometer is a...

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Veröffentlicht in:Review of scientific instruments 2009-06, Vol.80 (6), p.063103-063103
Hauptverfasser: Fuchs, O, Weinhardt, L, Blum, M, Weigand, M, Umbach, E, Bär, M, Heske, C, Denlinger, J, Chuang, Y-D, McKinney, W, Hussain, Z, Gullikson, E, Jones, M, Batson, P, Nelles, B, Follath, R
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Sprache:eng
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Zusammenfassung:We present a variable line-space grating spectrometer for soft x-rays that covers the photon energy range between 130 and 650 eV. The optical design is based on the Hettrick-Underwood principle and tailored to synchrotron-based studies of radiation-sensitive biological samples. The spectrometer is able to record the entire spectral range in one shot, i.e., without any mechanical motion, at a resolving power of 1200 or better. Despite its slitless design, such a resolving power can be achieved for a source spot as large as (30 x 3000) microm2, which is important for keeping beam damage effects in radiation-sensitive samples low. The high spectrometer efficiency allows recording of comprehensive two-dimensional resonant inelastic soft x-ray scattering (RIXS) maps with good statistics within several minutes. This is exemplarily demonstrated for a RIXS map of highly oriented pyrolytic graphite, which was taken within 10 min.
ISSN:0034-6748
1089-7623
DOI:10.1063/1.3133704