paper

Axial GaAs/Ga(As,Bi) Nanowire Heterostructures

arXiv:1903.11039

Abstract

Bi-containing III-V semiconductors constitute an exciting class of metastable compounds with wide-ranging potential optoelectronic and electronic applications. However, the growth of III-V-Bi alloys requires group-III-rich growth conditions, which pose severe challenges for planar growth. In this work, we exploit the naturally-Ga-rich environment present inside the metallic droplet of a self-catalyzed GaAs nanowire to synthesize metastable GaAs/GaAsBi axial nanowire heterostructures with high Bi contents. The axial GaAsBi segments are realized with molecular beam epitaxy by first enriching only the vapor-liquid-solid (VLS) Ga droplets with Bi, followed by exposing the resulting Ga-Bi droplets to As at temperatures ranging from 270 to 380C to precipitate GaAsBi only under the nanowire droplets. Microstructural and elemental characterization reveals the presence of single crystal zincblende GaAsBi axial nanowire segments with Bi contents up to (102). This work illustrates how the unique local growth environment present during the VLS nanowire growth can be exploited to synthesize heterostructures with metastable compounds.