Enhanced Kerr electro-optic nonlinearity through cascaded Pockels effects
Abstract
We demonstrated a large enhancement of Kerr electro-optic nonlinearity through cascaded Pockels effects in a domain inversion ferroelectric crystal. We designed a structure that can implement the cascaded Pockels effects and second-harmonic generation simultaneously. The energy coupling between the fundamental lights of different polarizations led to a large nonlinear phase shift, and thus an effective electro-optic nonlinear refractive index. The effective nonlinearity can be either positive or negative, causing the second-harmonic spectra to move towards the coupling center, which in turn, offered us a way to measure the effective electro-optic nonlinear refractive index. The corresponding enhanced Kerr electro-optic nonlinearity is more than three orders of magnitude higher than the intrinsic value. These results open a door to manipulate the nonlinear phase by applying external electric field instead of light intensity in noncentrosymmetric crystals.
Cite
@article{arxiv.1502.03886,
title = {Enhanced Kerr electro-optic nonlinearity through cascaded Pockels effects},
author = {Guang-Zhen Li and Yu-Ping Chen and Hao-Wei Jiang and Xian-Feng Chen},
journal= {arXiv preprint arXiv:1502.03886},
year = {2017}
}
Comments
15 pages, 6 figures