Title of article :
Relativistic effects in elastic scattering of electrons in TEM
Author/Authors :
Rother، نويسنده , , Axel and Scheerschmidt، نويسنده , , Kurt، نويسنده ,
Pages :
7
From page :
154
To page :
160
Abstract :
Transmission electron microscopy typically works with highly accelerated thus relativistic electrons. Consequently the scattering process is described within a relativistic formalism. In the following, we will examine three different relativistic formalisms for elastic electron scattering: Dirac, Klein-Gordon and approximated Klein-Gordon, the standard approach. This corresponds to a different consideration of spin effects and a different coupling to electromagnetic potentials. A detailed comparison is conducted by means of explicit numerical calculations. For this purpose two different formalisms have been applied to the approaches above: a numerical integration with predefined boundary conditions and the multislice algorithm, a standard procedure for such simulations. The results show a negligibly small difference between the different relativistic equations in the vicinity of electromagnetic potentials, prevailing in the electron microscope. The differences between the two numeric approaches are found to be small for small-angle scattering but eventually grow large for large-angle scattering, recorded for instance in high-angle annular dark field.
Keywords :
Electron diffraction , High-Resolution TEM , Electron holography
Journal title :
Astroparticle Physics
Record number :
2049339
Link To Document :
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