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High-purity X-ray polarimetry at high energies for Mössbauer spectroscopy.

Created on 15 Sep 2026

Authors

Berit Marx-Glowna, Ingo Uschmann, Robert Loetzsch, Willi Hippler, Judith Görs, Tony Wunderlich, Sakshath Sadashivaiah, Martin Tolkiehn, Gerhard G Paulus, Ralf Röhlsberger

Published in

Journal of synchrotron radiation. Nov 01, 2026. Epub Nov 01, 2026.

Abstract

High-purity X-ray polarimetry has so far been established only in the low-energy range up to 14.4 keV and has therefore been applied exclusively to the Mössbauer isotope 57Fe. Here we extend high-purity X-ray polarimetry to photon energies between 15 and 30 keV. Using asymmetric channel-cut Si crystals operated close to the Brewster angle, we design and realize a polarimeter optimized for synchrotron-based Mössbauer spectroscopy in this range of transition energies. As a demonstration, we implement a four-bounce Si (5 7 11) polarimeter at a photon energy of 22.494 keV at PETRA III and achieve a polarization purity of (1.2 ± 0.5) × 10-8. This establishes the polarimeter performance required for synchrotron Mössbauer spectroscopy at this energy and shows, supported by dynamical-diffraction calculations, that the method can be extended to nuclear transitions up to about 30 keV-opening access to isotopes such as 151Eu, 149Sm, 119Sn, and 161Dy. A nuclear-resonant measurement on these isotopes is the natural next step at a dedicated high-brilliance beamline.

PMID:
42735052
Bibliographic data and abstract were imported from PubMed on 15 Sep 2026.

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