Resonant X-ray Emission Spectroscopy With a Standing Wave Excitation

The Borrmann effect is the anomalous transmission of x rays in perfect crystals under diffraction conditions. It arises from the interference of the incident and diffracted waves, which creates a standing wave with nodes at strongly absorbing atoms. Dipolar absorption of x rays is thus diminished, w...

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Veröffentlicht in:arXiv.org 2017-01
Hauptverfasser: Ruotsalainen, Kari O, Honkanen, Ari-Pekka, Collins, Stephen P, Monaco, Giulio, Marco Moretti Sala, Krisch, Michael, Hämäläinen, Keijo, Hakala, Mikko, Huotari, Simo
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Sprache:eng
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Zusammenfassung:The Borrmann effect is the anomalous transmission of x rays in perfect crystals under diffraction conditions. It arises from the interference of the incident and diffracted waves, which creates a standing wave with nodes at strongly absorbing atoms. Dipolar absorption of x rays is thus diminished, which makes the crystal nearly transparent for certain x-ray wave vectors. Indeed, a relative enhancement of electric quadrupole absorption via the Borrmann effect has been demonstrated recently. Here we show that the Borrmann effect has a significantly larger impact on resonant x-ray emission than is observable in x-ray absorption. Emission from a dipole forbidden intermediate state may even dominate the corresponding x-ray spectra. Our work extends the domain of x-ray standing wave methods to resonant x-ray emission spectroscopy and provides means for novel spectroscopic experiments in d- and f-electron systems.
ISSN:2331-8422
DOI:10.48550/arxiv.1511.05354