English

Pockels effect induced strong Kerr nonlinearity in a lithium niobate waveguide

Optics 2025-12-12 v1

Abstract

The utilization of Kerr nonlinearity in lithium niobate has been extensively investigated over the years. Nevertheless, the practical implementation of Kerr nonlinearity in waveguides has been constrained by the material's inherently low third-order nonlinear coefficients. Here, we present a significant advancement by demonstrating Pockels effect-induced strong Kerr nonlinearity in a periodically poled thin-film lithium niobate waveguide. Both effective four-wave mixing (FWM) and cascaded effective FWM processes are experimentally observed. The induced FWM process achieves a remarkable maximum output power of -8.5 dBm, spanning a wavelength spectrum of over 116.8 nm. Analysis reveals that the induced effective Kerr nonlinearity exhibits a substantial effective nonlinear refractive index as 2.9×1015m2W12.9\times 10^{-15} m^{2}W^{-1}, corresponding to an effective nonlinear refractive index enhancement factor of 1.6×1041.6\times 10^{4} relative to the intrinsic value. Moreover, a wavelength-converting experiment demonstrates a flat optic-to-optic response over a broadband radiofrequency spectrum, confirming that signal integrity is well preserved after on-chip effective FWM conversion. Therefore, the demonstrated efficient and broadband Pockels effect induced effective Kerr nonlinearity paves the way for novel applications in diverse fields, including spectroscopy, parametric amplification, quantum correlation studies, and wavelength conversion technologies.

Keywords

Cite

@article{arxiv.2512.10462,
  title  = {Pockels effect induced strong Kerr nonlinearity in a lithium niobate waveguide},
  author = {Haoran Li and Fei Huang and Jingyan Guo and He Gao and Hanwen Li and Zhile Wu and Xinmin Yao and Zhengyuan Bao and Huan Li and Yaocheng Shi and Zejie Yu and Daoxin Dai},
  journal= {arXiv preprint arXiv:2512.10462},
  year   = {2025}
}

Comments

18 pages, 6 figures