English

Hole mobility of strained GaN from first principles

Materials Science 2019-09-04 v1

Abstract

Nitride semiconductors are ubiquitous in optoelectronic devices such as LEDs and Blu-Ray optical disks. A major limitation for further adoption of GaN in power electronics is its low hole mobility. In order to address this challenge, here we investigate the phonon-limited mobility of wurtzite GaN using the ab initio Boltzmann transport formalism, including all electron-phonon scattering processes, spin-orbit coupling, and many-body quasiparticle band structures. We demonstrate that the mobility is dominated by acoustic deformation-potential scattering, and we predict that the hole mobility can significantly be increased by lifting the split-off hole states above the light and heavy holes. This can be achieved by reversing the sign of the crystal-field splitting via strain or via coherent excitation the A1_1 optical phonon through ultrafast infrared optical pulses.

Keywords

Cite

@article{arxiv.1908.02072,
  title  = {Hole mobility of strained GaN from first principles},
  author = {Samuel Poncé and Debdeep Jena and Feliciano Giustino},
  journal= {arXiv preprint arXiv:1908.02072},
  year   = {2019}
}

Comments

17 pages and 11 figures

R2 v1 2026-06-23T10:40:48.356Z