English

Diffusion of Be in gallium nitride: Experiment and modelling

Materials Science 2020-01-22 v1

Abstract

Diffusion mechanism of beryllium in gallium nitride was investigated by analyzing temperature-dependent diffusion profiles from an infinite source. Beryllium atoms were implanted into a high structural quality gallium nitride layer crystallized by halide vapor phase epitaxy on an ammonothermal gallium nitride substrate. Post-implantation annealing was performed at different temperatures, between 1000{\deg}C and 1400{\deg}C, under high nitrogen pressure. Beryllium profiles were analyzed in the as-implanted and annealed samples by secondary ion mass spectrometry. It was shown that the diffusion of the dopant results from the combination of two mechanisms: rapid interstitial and slow interstitial-substitutional diffusion. The pre-exponential factor as well as activation energy for both diffusion paths were determined. Moreover, from the characteristic features of beryllium depth profiles, the formation energies of gallium vacancy and beryllium in interstitial position were calculated and compared to the theoretical values.

Keywords

Cite

@article{arxiv.2001.07458,
  title  = {Diffusion of Be in gallium nitride: Experiment and modelling},
  author = {Rafał Jakieła and Kacper Sierakowski and Tomasz Sochacki and Małgorzata Iwińska and Michał Fijalkowski and Adam Barcz and Michał Boćkowski},
  journal= {arXiv preprint arXiv:2001.07458},
  year   = {2020}
}

Comments

16 pages, 6 figures, 1 table, 4 equations

R2 v1 2026-06-23T13:16:22.832Z