Dynamical effects in the integrated X-ray scattering intensity from imperfect crystals in Bragg diffraction geometry. II. Dynamical theory

Author:

Molodkin V. B.ORCID,Olikhovskii S. I.ORCID,Dmitriev S. V.ORCID,Lizunov V. V.ORCID

Abstract

The analytical expressions for coherent and diffuse components of the integrated reflection coefficient are considered in the case of Bragg diffraction geometry for single crystals containing randomly distributed microdefects. These expressions are analyzed numerically for the cases when the instrumental integration of the diffracted X-ray intensity is performed on one, two or three dimensions in the reciprocal-lattice space. The influence of dynamical effects, i.e. primary extinction and anomalously weak and strong absorption, on the integrated intensities of X-ray scattering is investigated in relation to the crystal structure imperfections.

Funder

National Academy of Sciences of Ukraine

National Research Foundation of Ukraine

Publisher

International Union of Crystallography (IUCr)

Subject

Inorganic Chemistry,Physical and Theoretical Chemistry,Condensed Matter Physics,General Materials Science,Biochemistry,Structural Biology

Reference100 articles.

1. Authier, A. (2004). Dynamical Theory of X-ray Diffraction. Oxford University Press.

2. Diffuse x-ray scattering from thin films with defects

3. Barabash, R. I., Ice, G. E. & Turchi, P. E. A. (2009). Diffuse Scattering and the Fundamental Properties of Materials. New Jersey: Momentum Press.

4. Dynamical Diffraction of X Rays by Perfect Crystals

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