research

Reverse Monte Carlo Simulations and Raman Scattering of an Amorphous GeSe4_4 Alloy Produced by Mechanical Alloying

Abstract

The short and intermediate range order of an amorphous GeSe4_4 alloy produced by Mechanical Alloying were studied by Reverse Monte Carlo simulations of its x-ray total structure factor and Raman scattering. The simulations were used to compute the GGe-GeRMC(r)G^{\text{RMC}}_{\text{Ge-Ge}}(r), GGe-SeRMC(r)G^{\text{RMC}}_{\text{Ge-Se}}(r) and GSe-SeRMC(r)G^{\text{RMC}}_{\text{Se-Se}}(r) partial distribution functions and the SGe-GeRMC(K){\cal S}^{\text{RMC}}_{\text{Ge-Ge}}(K), SGe-SeRMC(K){\cal S}^{\text{RMC}}_{\text{Ge-Se}}(K) and SSe-SeRMC(K){\cal S}^{\text{RMC}}_{\text{Se-Se}}(K) partial structure factors. We calculated the coordination numbers and interatomic distances for the first and second neighbors and the bond-angle distribution functions Θijl(cosθ)\Theta_{ijl}(\cos\theta). The data obtained indicate that the structure of the alloy has important differences when compared to alloys prepared by other techniques. There are a high number of Se-Se pairs in the first shell, and some of the tetrahedral units formed seemed to be connected by Se-Se bridges.Comment: 7 figures, submitted to J. Phys.: Cond. Matte

    Similar works

    Full text

    thumbnail-image

    Available Versions

    Last time updated on 11/12/2019