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A systematic study of spin-dependent recombination in GaAs$_{1-x}$N$_x$ as a function of nitrogen content

Materials Science 2023-10-30 v1

Abstract

A systematic study of spin-dependent recombination (SDR) under steady-state optical pumping conditions in dilute nitride semiconductors as a function of nitrogen content is reported. The alloy content is determined by a fit of the photoluminescence (PL) intensity using a Roosbroeck-Shockley relation and verified by a study of the GaN-like LO2_2 phonon peak in a Raman spectroscopy map. PL spectra taken from alloys of the form GaAs1x_{1-x}Nx_x where 0.022<x<0.0360.022 < x < 0.036 exhibit PL intensity increases when switching from a linearly- to a circularly-polarized pump up to a factor of 5 for x=0.022x = 0.022. This work used a 1.39 eV laser with a radius of 0.6 μ\mum. The observed SDR ratio monotonically decreases with increasing xx, reaching 1.5 for x=0.036x = 0.036. Moreover, the excitation power required to obtain maximum SDR systematically increases with increasing xx, varying from 0.6 mW for x=0.022x = 0.022 to 15 mW for x=0.036x = 0.036. These observations are consistent with an increase in the density of electronically active defects with increasing nitrogen content, both those responsible for the SDR as well as other, standard Shockley-Read-Hall (SRH) centers.

Keywords

Cite

@article{arxiv.2208.08785,
  title  = {A systematic study of spin-dependent recombination in GaAs$_{1-x}$N$_x$ as a function of nitrogen content},
  author = {A. C. Ulibarri and R. Kothari and A. Garcia and J. C. Harmand and S. Park and F. Cadiz and J. Peretti and A. C. H. Rowe},
  journal= {arXiv preprint arXiv:2208.08785},
  year   = {2023}
}

Comments

11 pages, 5 figures; work presented at the International Conference on the Physics of Semiconductors, Sydney, 2022