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4D texture of circular dichroism in soft-x-ray photoemission from tungsten

Authors :
Martin Ellguth
Sergey V. Chernov
Jan Minár
Wilfried Wurth
Andreas Oelsner
Simon Däster
Gerd Schönhense
O. Fedchenko
Katerina Medjanik
D. Kutnyakhov
Jens Viefhaus
P. Lutz
Jürgen Braun
Thiago R. F. Peixoto
Hubert Ebert
F. Reinert
Chul-Hee Min
B. Schönhense
Hans-Joachim Elmers
Yves Acremann
Source :
New Journal of Physics, 21, New journal of physics 21(1), 013017 (2019). doi:10.1088/1367-2630/aaf4cd
Publication Year :
2019
Publisher :
Institute of Physics, 2019.

Abstract

Brief treatment and crisis intervention 21(1), 013017 (2019). doi:10.1088/1367-2630/aaf4cd<br />Photoemission-intensity distributions $I_{RCP/LCP}(E_{B}, k )$ measured for right- and left-circularly polarized soft x-rays revealed a large circular dichroism in angular distribution (CDAD) in the 4D parameter space ($E_B$ binding energy, $k$ momentum vector). Full-field k-imaging combined with time-of-flight energy recording at a high-brilliance soft x-ray beamline allowed mapping the CDAD in the bulk Brillouin zone of tungsten and the entire d-band complex within a few hours. CDAD-asymmetries are very high (up to 90%), persist throughout the whole photon-energy range (300–1300 eV) and show a pronounced dependence on momentum k and binding energy $E_B$, visualized as movies or sequences of cuts through the 4D object. One-step photoemission calculations for the same photon energies show fair agreement with the measured results. In addition to the requirement of a 'handed' experimental geometry, known from previous experiments on adsorbates and surface states, we find an anti-symmetric behavior of the CDAD with respect to two bulk mirror planes. A new symmetry condition along the perpendicular momentum $k_z$ makes CDAD a valuable tool for an unambiguous identification of high-symmetry planes in direct transitions in the periodic zone scheme. Technically, the method provides a circular polarimeter for soft, tender and hard x-rays.<br />Published by Oxford Univ. Press, Oxford

Details

Language :
English
ISSN :
13672630
Database :
OpenAIRE
Journal :
New Journal of Physics, 21, New journal of physics 21(1), 013017 (2019). doi:10.1088/1367-2630/aaf4cd
Accession number :
edsair.doi.dedup.....a5b99157abd03077b9578a9a983eccf7
Full Text :
https://doi.org/10.1088/1367-2630/aaf4cd