Physical mode analysis of multimode cascaded nonlinear processes in strongly-coupled waveguides

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Xia, Lisi, van der Slot, Peter J. M., Toebes, Chris, Boller, Klaus -J.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915227103133696
author Xia, Lisi
van der Slot, Peter J. M.
Toebes, Chris
Boller, Klaus -J.
author_facet Xia, Lisi
van der Slot, Peter J. M.
Toebes, Chris
Boller, Klaus -J.
contents We experimentally investigate on-chip control and analysis of spatially multimode nonlinear interactions in silicon nitride waveguide circuits. Using widely different dispersion of transverse supermodes in a strongly-coupled dual-core waveguide section, and using integrated pairs of input and output single-mode waveguides, we enable controlled excitation of nonlinear processes in multiple supermodes, while a basic physical mode decomposition aids the identification of parallel and cascaded processes. Pumping with ultrashort pulses at 1.5-$μ$m wavelength (around 195-THz light frequency), we observe simultaneous dual-supermode, near-infrared supercontinuum generation having different spectral widths, in parallel with third-harmonic generation at around 515 nm (582 THz). Cascaded four-wave mixing with supercontinuum components upconverts the third-harmonic radiation toward a set of four shorter blue wavelengths emitted in the range between 485 and 450 nm (617 to 661 THz). The approach taken here, i.e., using chip-integrated spatial multiplexing and demultiplexing for excitation and analysis of broadband transverse nonlinear conversion, can be an advanced tool for better understanding and control in multimode nonlinear optics, such as for extending frequency conversion to wider spectral ranges via extra phase matching paths.
format Preprint
id arxiv_https___arxiv_org_abs_2410_24073
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Physical mode analysis of multimode cascaded nonlinear processes in strongly-coupled waveguides
Xia, Lisi
van der Slot, Peter J. M.
Toebes, Chris
Boller, Klaus -J.
Optics
We experimentally investigate on-chip control and analysis of spatially multimode nonlinear interactions in silicon nitride waveguide circuits. Using widely different dispersion of transverse supermodes in a strongly-coupled dual-core waveguide section, and using integrated pairs of input and output single-mode waveguides, we enable controlled excitation of nonlinear processes in multiple supermodes, while a basic physical mode decomposition aids the identification of parallel and cascaded processes. Pumping with ultrashort pulses at 1.5-$μ$m wavelength (around 195-THz light frequency), we observe simultaneous dual-supermode, near-infrared supercontinuum generation having different spectral widths, in parallel with third-harmonic generation at around 515 nm (582 THz). Cascaded four-wave mixing with supercontinuum components upconverts the third-harmonic radiation toward a set of four shorter blue wavelengths emitted in the range between 485 and 450 nm (617 to 661 THz). The approach taken here, i.e., using chip-integrated spatial multiplexing and demultiplexing for excitation and analysis of broadband transverse nonlinear conversion, can be an advanced tool for better understanding and control in multimode nonlinear optics, such as for extending frequency conversion to wider spectral ranges via extra phase matching paths.
title Physical mode analysis of multimode cascaded nonlinear processes in strongly-coupled waveguides
topic Optics
url https://arxiv.org/abs/2410.24073