English

Tunable bulk photovoltaic effect in strained $\gamma$-GeSe

Materials Science 2022-12-14 v2

Abstract

Recently, Lee \textit{et. al.} [Nano Lett. \textbf{21}, 4305 (2021)] newly synthesized monochalcogenide GeSe in a polar phase, referred to as γ\gamma-phase. Motivated by this work, we study shift current of γ\gamma-GeSe and its tunability via an in-plane uniaxial strain. Using first-principles calculations, we uncover the electronic structure of the strained γ\gamma-GeSe systems. We then calculate frequency-dependent shift current conductivities at various strains. The tunability is demonstrated to enhance the shift current up to \sim 20 μ\muA/V2^2. Moreover, the direction of shift current can be inverted by a light strain. Markedly, an anomalous behavior is found in the zero-frequency limit, which can be an indicative of band inversion and a potential topological phase transition driven by the strain. Our results suggest that shift current can be a tangible prove of bulk electronic states of γ\gamma-GeSe.

Keywords

Cite

@article{arxiv.2203.06790,
  title  = {Tunable bulk photovoltaic effect in strained $\gamma$-GeSe},
  author = {Hong-Guk Min and Churlhi Lyi and Youngkuk Kim},
  journal= {arXiv preprint arXiv:2203.06790},
  year   = {2022}
}
R2 v1 2026-06-24T10:11:45.049Z