Nonlinear Schrödinger equation for integrated photonics

Author:

Gravesen Kevin Bach1ORCID,Brimnes Gardner Asger1,Ulsig Emil Zanchetta1ORCID,Stanton Eric J.234ORCID,Torrild Hansen Mikkel,Thomsen Simon Thorndahl,Ahler Lucas,Volet Nicolas1

Affiliation:

1. UVL A/S

2. EMode Photonix

3. Associate of the National Institute of Standards and Technology

4. University of Colorado, Boulder

Abstract

The foundations of nonlinear optics are revisited, and the formalism is applied to waveguide modes. The effects of loss and dispersion are included rigorously along with the vectorial nature of the modes, and a full derivation of a new version of the nonlinear Schrödinger (NLS) equation is presented. This leads to more general expressions for the group index, for the group-index dispersion (GVD), and for the Kerr coefficient. These quantities are essential for the design of waveguides suitable for, e.g., the generation of optical frequency combs and all-optical switches. Examples are given using the silicon nitride material platform. Specifically, values are extracted for the coefficients of the chi-3 tensor based on measurements of Kerr coefficients and mode simulations.

Funder

Innovationsfonden

Publisher

Optica Publishing Group

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