4.5 Article

Modification of β-gallium oxide electronic properties by irradiation with high-energy electrons

Journal

JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A
Volume 40, Issue 3, Pages -

Publisher

A V S AMER INST PHYSICS
DOI: 10.1116/6.0001821

Keywords

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Funding

  1. EMIR&A French accelerator network [CNRS 3618]
  2. Agence de l'Innovation de Defense, Ministere des Armees [2018 60 0074 00 470 75 01]

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In this study, we investigate the modifications of the electronic properties of beta-gallium oxide crystals through 2.5-MeV electron irradiation. We find a linear relation between the irradiation dose and the concentration of generated acceptor centers. Using irradiation, we can tune the Fermi level position and reveal latent impurities of transition metals.
We present a study of the modifications of the electronic properties of beta-gallium oxide crystals by 2.5-MeV electron irradiation. This type of irradiation produces exclusively local point defects in Ga2O3, predominantly gallium vacancies, which act as acceptor centers. Starting with a highly n-doped sample, we establish a quantitative linear relation between the irradiation dose and the concentration of generated acceptor centers. This gives the possibility to tune the Fermi level position within the bandgap by choosing an appropriate irradiation dose. At high doses, with a very deep position of the Fermi level, the n-type sample becomes compensated, reaching a semi-insulating state. The downward shift of the Fermi level with irradiation allows us to reveal the presence of latent impurities of transition metals (like Cr and Fe), which are inactive in electron paramagnetic resonance and luminescence spectra of pristine samples. This study confirms the potential of electron irradiation as a tool for tailoring the electronic properties of gallium oxide. Published under an exclusive license by the AVS.

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