English

Unveiling the Pockels Coefficient of Ferroelectric Nitride ScAlN

Materials Science 2024-10-22 v2 Applied Physics Optics

Abstract

Nitride ferroelectrics have recently emerged as promising alternatives to oxide ferroelectrics due to their compatibility with mainstream semiconductor processing. ScAlN, in particular, has exhibited remarkable piezoelectric coupling strength (K2K^2) comparable to that of lithium niobate (LN), making it a valuable choice for RF filters in wireless communications. Recently, ScAlN has sparked interest in its use for nanophotonic devices, chiefly due to its large bandgap facilitating operation in blue wavelengths coupled with promises of enhanced nonlinear optical properties such as a large second-order susceptibility (χ(2)\chi^{(2)}). It is still an open question whether ScAlN can outperform oxide ferroelectrics concerning the Pockels effect -- an electro-optic coupling extensively utilized in optical communications devices. In this paper, we present a comprehensive theoretical analysis and experimental demonstration of ScAlN's Pockels effect. Our findings reveal that the electro-optic coupling of ScAlN, despite being weak at low Sc concentration, may be significantly enhanced and exceed LiNbO3_3 at high levels of Sc doping, which points the direction of continued research efforts to unlock the full potential of ScAlN.

Keywords

Cite

@article{arxiv.2405.07978,
  title  = {Unveiling the Pockels Coefficient of Ferroelectric Nitride ScAlN},
  author = {Guangcanlan Yang and Haochen Wang and Sai Mu and Hao Xie and Tyler Wang and Chengxing He and Mohan Shen and Mengxia Liu and Chris G. Van de Walle and Hong X. Tang},
  journal= {arXiv preprint arXiv:2405.07978},
  year   = {2024}
}