Self-organized spatiotemporal quasi-phase-matching in microresonators

J Ji Zhou J Jianqi Hu M Marco Clementi O Ozan Yakar E Edgars Nitiss A Anton Stroganov C Camille-Sophie Brès

Abstract

Abstract Quasi-phase-matching (QPM) is a widely adopted technique for mitigating stringent momentum conservation in nonlinear optical processes such as second-harmonic generation (SHG). It effectively compensates for the phase velocity mismatch between optical harmonics by introducing a periodic spatial modulation to the nonlinear optical medium. Such a mechanism has been further generalized to the spatiotemporal domain, where a non-stationary spatial QPM can induce a frequency shift of the generated light. Here we demonstrate how a spatiotemporal QPM grating, consisting in a concurrent spatial and temporal modulation of the nonlinear response, naturally emerges through all-optical poling in silicon nitride microresonators. Mediated by the coherent photogalvanic effect, a traveling space-charge grating is self-organized, affecting momentum and energy conservation, resulting in a quasi-phase-matched and Doppler-shifted second harmonic. Our observation of the photoinduced spatiotemporal QPM expands the scope of phase matching conditions in nonlinear photonics.

Article Details

Volume / Issue Vol. 16, Issue 1
Published May 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

J

Ji Zhou

J

Jianqi Hu

M

Marco Clementi

O

Ozan Yakar

E

Edgars Nitiss

A

Anton Stroganov

C

Camille-Sophie Brès