English

Phonon-assisted Auger-Meitner Recombination in Silicon from First Principles

Materials Science 2023-08-31 v2

Abstract

We present a consistent first-principles methodology to study both direct and phonon-assisted Auger-Meitner recombination (AMR) in indirect-gap semiconductors that we apply to investigate the microscopic origin of AMR processes in silicon. Our results are in excellent agreement with experimental measurements and show that phonon-assisted contributions dominate the recombination rate in both n-type and p-type silicon, demonstrating the critical role of phonons in enabling AMR. We also decompose the overall rates into contributions from specific phonons and electronic valleys to further elucidate the microscopic origins of AMR. Our results highlight potential pathways to modify the AMR rate in silicon via strain engineering.

Cite

@article{arxiv.2207.08028,
  title  = {Phonon-assisted Auger-Meitner Recombination in Silicon from First Principles},
  author = {Kyle Bushick and Emmanouil Kioupakis},
  journal= {arXiv preprint arXiv:2207.08028},
  year   = {2023}
}

Comments

Version accepted for publication, includes main text and supplemental material

R2 v1 2026-06-25T00:58:37.790Z