1994•Applied Physics LettersRequires access

Correlation between x-ray diffraction patterns and strain distribution inside GaInP/GaAs superlattices

X. G. He, Matthew Erdtmann, R. Williams, S. Kim, Manijeh Razeghi

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Abstract

Strong correlation between x-ray diffraction characteristics and strain distribution inside GaInP/GaAs superlattices has been reported. It is found that the symmetry of (002) diffraction patterns can be used to evaluate the interface strain status. A sample with no interfacial strains has a symmetric (002) diffraction pattern and weak (004) diffraction pattern. It is also demonstrated that strain distribution in superlattices can be readily estimated qualitatively by analyzing x-ray diffraction patterns.

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What this paper is about

Strong correlation between x-ray diffraction characteristics and strain distribution inside GaInP/GaAs superlattices has been reported. It is found that the symmetry of (002) diffraction patterns can be used to evaluate the interface strain status. A sample with no interfacial strains has a symmetric (002) diffraction pattern and weak (004) diffraction pattern. It is also demonstrated that strain distribution in superlattices can be readily estimated qualitatively by analyzing x-ray diffraction patterns.

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Available abstract

Strong correlation between x-ray diffraction characteristics and strain distribution inside GaInP/GaAs superlattices has been reported. It is found that the symmetry of (002) diffraction patterns can be used to evaluate the interface strain status. A sample with no interfacial strains has a symmetric (002) diffraction pattern and weak (004) diffraction pattern. It is also demonstrated that strain distribution in superlattices can be readily estimated qualitatively by analyzing x-ray diffraction patterns.

Key concepts: Diffraction, Superlattice, X-ray crystallography, Materials science, Condensed matter physics, Strain (injury), Crystallography, Optics

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