Photonic crystal resonators for inverse-designed multi-dimensional optical interconnects

Author:

Shirpurkar C.1ORCID,Zang J.2ORCID,Yang K. Y.3,Carlson D.2ORCID,Yu S. P2ORCID,Lucas E.2,Pericherla S. V.1ORCID,Yang J.3,Guidry M.3,Lukin D.3,Ahn G. H.3ORCID,Lu J.3,Trask L.1,Aflatouni F.4ORCID,Vučković J.3,Papp S. B.2ORCID,Delfyett P. J.1

Affiliation:

1. University of Central Florida

2. National Institute of Standards and Technology

3. Stanford University

4. University of Pennsylvania

Abstract

We experimentally demonstrate a 400 Gbit/s optical communication link utilizing wavelength-division multiplexing and mode-division multiplexing for a total of 40 channels. This link utilizes a novel, to the best of our knowledge, 400 GHz frequency comb source based on a chip-scale photonic crystal resonator. Silicon-on-insulator photonic inverse-designed 4 × 4 mode-division multiplexer structures enable a fourfold increase in data capacity. We show less than −10 dBm of optical receiver power for error-free data transmission in 34 out of a total of 40 channels using a PRBS31 pattern.

Funder

Defense Advanced Research Projects Agency

National Science Foundation

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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