April 2021

Journal

Period-doubling reconstructions of semiconductor partial dislocations

By:
Park, Ji-Sang; Huang, Bing ; Wei, Su-Huai; Kang, Joongoo; McMahon, William
Journal Name:
NPG Asia Materials
Volume:
7
Issue Number:
e216
Publication Date:
April 22, 2021
View DOI Listing:
https://doi.org/10.1038/am.2015.102

Abstract

Atomic-scale understanding and control of dislocation cores is of great technological importance, because they act as recombination centers for charge carriers in optoelectronic devices. Using hybrid density-functional calculations, we present period-doubling reconstructions of a 90 degrees partial dislocation in GaAs, for which the periodicity of like-atom dimers along the dislocation line varies from one to two, to four dimers. The electronic properties of a dislocation change drastically with each period doubling. The dimers in the single-period dislocation are able to interact, to form a dispersive one-dimensional band with deep-gap states. However, the inter-dimer interaction for the double-period dislocation becomes significantly reduced; hence, it is free of mid-gap states. The Ga core undergoes a further period-doubling transition to a quadruple-period reconstruction induced by the formation of small hole polarons. The competition between these dislocation phases suggests a new passivation strategy via population manipulation of the detrimental single-period phase.