Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group
  • Chinese Optics Letters
  • Vol. 21,
  • Issue 5,
  • pp. 051301-
  • (2023)

Waveguide-resonator coupling structure design in the lithium niobate on insulator for χ(2) nonlinear applications

Not Accessible

Your library or personal account may give you access

Abstract

The microring resonator based on lithium niobate on insulator (LNOI) is a promising platform for broadband nonlinearity process because of its strong second-order nonlinear coefficients, the capability of dispersion engineering, etc. It is important to control the energy transmitted into the resonator at different wavelengths, as this becomes difficult for two bands across an octave. In this Letter, we study the effect of different pulley bus-resonator configurations on phase mismatching and mode field overlap. We achieve the control of energy transmission coefficients at different wavebands simultaneously and provide a general design methodology for coupled structures for broadband applications. This paper can contribute to quantum and classical optical broadband applications based on LNOI microring resonators.

© 2023 Chinese Laser Press

PDF Article
More Like This
Resonant nonlinear nanostructured grating in an unstructured lithium niobate on insulator platform

Yuanzhi Hu, Zhijin Huang, Xianzhi Zeng, Yang Li, Kaiwen Luo, Heyuan Guan, Yaoyu Cao, and Huihui Lu
Opt. Mater. Express 13(10) 2904-2913 (2023)

High-efficiency edge-coupling based on lithium niobate on an insulator wire waveguide

Ying Li, Tian Lan, Jing Li, and Zhiyong Wang
Appl. Opt. 59(22) 6694-6701 (2020)

A design method of lithium niobate on insulator ridge waveguides without leakage loss

Emi Saitoh, Yuki Kawaguchi, Kunimasa Saitoh, and Masanori Koshiba
Opt. Express 19(17) 15833-15842 (2011)

Cited By

You do not have subscription access to this journal. Cited by links are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.