Author:
Oxley Mark P.,Kapetanakis Myron D.,Prange Micah P.,Varela Maria,Pennycook Stephen J.,Pantelides Sokrates T.
Abstract
AbstractWe present a theoretical framework for calculating probe-position-dependent electron energy-loss near-edge structure for the scanning transmission electron microscope by combining density functional theory with dynamical scattering theory. We show how simpler approaches to calculating near-edge structure fail to include the fundamental physics needed to understand the evolution of near-edge structure as a function of probe position and investigate the dependence of near-edge structure on probe size. It is within this framework that density functional theory should be presented, in order to ensure that variations of near-edge structure are truly due to local electronic structure and how much from the diffraction and focusing of the electron beam.
Publisher
Cambridge University Press (CUP)
Cited by
12 articles.
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