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Understanding electron magnetic circular dichroism in a transition potential approach

Authors :
Barthel, J.
Mayer, J.
Rusz, Jan
Ho, P. -L
Zhong, X. Y.
Lentzen, M.
Dunin-Borkowski, R. E.
Urban, K. W.
Brown, H. G.
Findlay, S. D.
Allen, L. J.
Barthel, J.
Mayer, J.
Rusz, Jan
Ho, P. -L
Zhong, X. Y.
Lentzen, M.
Dunin-Borkowski, R. E.
Urban, K. W.
Brown, H. G.
Findlay, S. D.
Allen, L. J.
Publication Year :
2018

Abstract

This paper introduces an approach based on transition potentials for inelastic scattering to understand the underlying physics of electron magnetic circular dichroism (EMCD). The transition potentials are sufficiently localized to permit atomic-scale EMCD. Two-beam and three-beam systematic row cases are discussed in detail in terms of transition potentials for conventional transmission electron microscopy, and the basic symmetries which arise in the three-beam case are confirmed experimentally. Atomic-scale EMCD in scanning transmission electron microscopy (STEM), using both a standard STEM probe and vortex beams, is discussed.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235183744
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1103.PhysRevB.97.144103