English

Observing visible-range photoluminescence in GaAs nanowires modified by laser irradiation

Mesoscale and Nanoscale Physics 2018-06-15 v1

Abstract

We study structural and chemical transformations induced by focused laser beam in GaAs nanowires with axial zinc-blende/wurtzite (ZB/WZ) heterostucture. The experiments are performed using a combination of transmission electron microscopy, energy-dispersive X-ray spectroscopy, Raman scattering, and photoluminescence spectroscopy. For the both components of heterostructure, laser irradiation under atmospheric air is found to produce a double surface layer which is composed of crystalline arsenic and of amorphous GaOx_{x}. The latter compound is responsible for appearance of a peak at 1.76 eV in photoluminescence spectra of GaAs nanowires. Under increased laser power density, due to sample heating, evaporation of the surface crystalline arsenic and formation of β\beta-Ga2_{2}O3_{3} nanocrystals proceed on surface of the zinc-blende part of nanowire. The formed nanocrystals reveal a photoluminescence band in visible range of 1.7-2.4 eV. At the same power density for wurtzite part of the nanowire, total amorphization with formation of β\beta-Ga2_{2}O3_{3} nanocrystals occurs. Observed transformation of WZ-GaAs to β\beta-Ga2_{2}O3_{3} nanocrystals presents an available way for creation of axial and radial heterostuctures ZB-GaAs/β\beta-Ga2_{2}O3_{3} for optoelectronic and photonic applications.

Keywords

Cite

@article{arxiv.1701.04590,
  title  = {Observing visible-range photoluminescence in GaAs nanowires modified by laser irradiation},
  author = {P. A. Alekseev and M. S. Dunaevskiy and D. A. Kirilenko and A. N. Smirnov and V. Yu. Davydov and V. L. Berkovits},
  journal= {arXiv preprint arXiv:1701.04590},
  year   = {2018}
}

Comments

12 pages, 5 figures