Grain Boundaries in Gallium Arsenide Nanocrystals Under Pressure: A Parallel Molecular-Dynamics Study

Sanjay Kodiyalam, Rajiv K. Kalia, Hideaki Kikuchi, Aiichiro Nakano, Fuyuki Shimojo, and Priya Vashishta
Phys. Rev. Lett. 86, 55 – Published 1 January 2001
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Abstract

Structural transformation in gallium arsenide nanocrystals under pressure is studied using molecular-dynamics simulations on parallel computers. It is found that the transformation from fourfold to sixfold coordination is nucleated on the nanocrystal surface and proceeds inwards with increasing pressure. Inequivalent nucleation of the high-pressure phase at different sites leads to inhomogeneous deformation of the nanocrystal. This results in the transformed nanocrystal having grains of different orientations separated by grain boundaries. A new method based on microscopic transition paths is introduced to uniquely characterize grains and deformations.

  • Received 18 September 2000

DOI:https://doi.org/10.1103/PhysRevLett.86.55

©2001 American Physical Society

Authors & Affiliations

Sanjay Kodiyalam, Rajiv K. Kalia, Hideaki Kikuchi, Aiichiro Nakano, Fuyuki Shimojo, and Priya Vashishta

  • Concurrent Computing Laboratory for Materials Simulations, Department of Physics & Astronomy and Department of Computer Science, Louisiana State University, Baton Rouge, Louisiana 70803-4001

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Issue

Vol. 86, Iss. 1 — 1 January 2001

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