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R. Negishi, T. Fukamachi, M. Yoshizawa, K. Hirano, K. Hirano, T. Kawamura (2009)
In‐phase and anti‐phase interference fringes in Laue casephysica status solidi (a), 206
A. Authier (2001)
Dynamical theory of x-ray diffraction
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M. Laue (1949)
Die Absorption der Röntgenstrahlen in Kristallen im InterferenzfallActa Crystallographica, 2
T. Saka (2016)
Formulation of dynamical theory of X-ray diffraction for perfect crystals in the Laue case using the Riemann surface.Acta crystallographica. Section A, Foundations and advances, 72 Pt 3
R. Negishi, T. Fukamachi, M. Yoshizawa, K. Hirano, K. Hirano, T. Kawamura (2011)
Phase determination of crystal structure factor using measured rocking curvesphysica status solidi (a), 208
N. Kato, A. Lang (1959)
A study of pendellösung fringes in X‐ray diffractionActa Crystallographica, 12
R. Negishi, T. Fukamachi, M. Yoshizawa, K. Hirano, K. Hirano, T. Kawamura (2008)
In-phase and Anti-phase Interference Fringes in Rocking Curves of Resonant X-ray Dynamical Diffraction(Condensed matter: electronic structure and electrical, magnetic, and optical properties)Journal of the Physical Society of Japan, 77
Formulations are given for the intensities of transmitted and diffracted waves in the Laue case of a perfect crystal. This is applicable irrespective of the magnitudes of both the real and imaginary parts of the Fourier components of the crystal polarizability. The phase shift of the Pendellösung oscillations of the transmitted and diffracted waves is analyzed in detail for a symmetrical Laue case. The phase is determined to shift continuously from out of phase to in phase for absorbing crystals.
Acta Crystallographica Section A Foundations of Crystallography – Wiley
Published: Mar 1, 2020
Keywords: ; ; ; ;
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