Observation of topological frequency combs

Author:

Flower Christopher J.1ORCID,Jalali Mehrabad Mahmoud1ORCID,Xu Lida1ORCID,Moille Gregory1ORCID,Suarez-Forero Daniel G.1ORCID,Örsel Oğulcan2,Bahl Gaurav2ORCID,Chembo Yanne3ORCID,Srinivasan Kartik1ORCID,Mittal Sunil4ORCID,Hafezi Mohammad1ORCID

Affiliation:

1. Joint Quantum Institute, National Institute of Standards and Technology, University of Maryland, College Park, MD, USA.

2. Department of Mechanical Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, USA.

3. Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, MD, USA.

4. Department of Electrical and Computer Engineering, Northeastern University, Boston, MA, USA.

Abstract

On-chip generation of optical frequency combs using nonlinear ring resonators has enabled numerous applications of combs that were otherwise limited to mode-locked lasers. Nevertheless, on-chip frequency combs have relied predominantly on single-ring resonators. In this study, we experimentally demonstrate the generation of a novel class of frequency combs, the topological frequency combs, in a two-dimensional lattice of hundreds of ring resonators that hosts fabrication-robust topological edge states with linear dispersion. By pumping these edge states, we demonstrate the generation of a nested frequency comb that shows oscillation of multiple edge state resonances across ≈40 longitudinal modes and is spatially confined at the lattice edge. Our results provide an opportunity to explore the interplay between topological physics and nonlinear frequency comb generation in a commercially available nanophotonic platform.

Publisher

American Association for the Advancement of Science (AAAS)

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