Numerical investigation of effective nonlinear coefficient model for coupled third harmonic generation

Fuente: arXiv
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Main Authors: Zheng, Zihua, Tang, Ziwen, Wei, Zhiyi, Sun, Jinghua
Format: Preprint
Published: 2023
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author Zheng, Zihua
Tang, Ziwen
Wei, Zhiyi
Sun, Jinghua
author_facet Zheng, Zihua
Tang, Ziwen
Wei, Zhiyi
Sun, Jinghua
contents In this paper, the optimal solution of effective nonlinear coefficient of quasi-phase-matching (QPM) crystals for coupled third harmonic generation (CTHG) was numerically investigated. The effective nonlinear coefficient of CTHG was converted to an Ising model for optimizing domain length distributions of aperiodically poled lithium niobate (APPLN) crystals with lengths as 0.5 mm and 1 mm, and fundamental wavelengths ranging from 1000 nm to 6000 nm. A method for reconstructing crystal domain poling weight curve of coupled nonlinear processes was also proposed, which demonstrated the optimal conversion ratio between two coupled nonlinear processes at each place along the crystal. In addition, by applying the semidefinite programming, the upper bound on the effective nonlinear coefficients deff for different fundamental wavelengths were calculated. The research can be extended to any coupled dual \c{hi}(2) process and will help us to understand better the dynamics of coupled nonlinear interactions based on QPM crystals.
format Preprint
id arxiv_https___arxiv_org_abs_2311_13426
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Numerical investigation of effective nonlinear coefficient model for coupled third harmonic generation
Zheng, Zihua
Tang, Ziwen
Wei, Zhiyi
Sun, Jinghua
Optics
In this paper, the optimal solution of effective nonlinear coefficient of quasi-phase-matching (QPM) crystals for coupled third harmonic generation (CTHG) was numerically investigated. The effective nonlinear coefficient of CTHG was converted to an Ising model for optimizing domain length distributions of aperiodically poled lithium niobate (APPLN) crystals with lengths as 0.5 mm and 1 mm, and fundamental wavelengths ranging from 1000 nm to 6000 nm. A method for reconstructing crystal domain poling weight curve of coupled nonlinear processes was also proposed, which demonstrated the optimal conversion ratio between two coupled nonlinear processes at each place along the crystal. In addition, by applying the semidefinite programming, the upper bound on the effective nonlinear coefficients deff for different fundamental wavelengths were calculated. The research can be extended to any coupled dual \c{hi}(2) process and will help us to understand better the dynamics of coupled nonlinear interactions based on QPM crystals.
title Numerical investigation of effective nonlinear coefficient model for coupled third harmonic generation
topic Optics
url https://arxiv.org/abs/2311.13426