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DOE OSTI · 3672037

Integrated optical frequency division for microwave and mmWave generation

Abstract

Abstract The generation of ultra-low-noise microwave and mmWave in miniaturized, chip-based platforms can transform communication, radar and sensing systems 1–3 . Optical frequency division that leverages optical references and optical frequency combs has emerged as a powerful technique to generate microwaves with superior spectral purity than any other approaches 4–7 . Here we demonstrate a miniaturized optical frequency division system that can potentially transfer the approach to a complementary metal-oxide-semiconductor-compatible integrated photonic platform. Phase stability is provided by a large mode volume, planar-waveguide-based optical reference coil cavity 8,9 and is divided down from optical to mmWave frequency by using soliton microcombs generated in a waveguide-coupled microresonator 10–12 . Besides achieving record-low phase noise for integrated photonic mmWave oscillators, these devices can be heterogeneously integrated with semiconductor lasers, amplifiers and photodiodes, holding the potential of large-volume, low-cost manufacturing for fundamental and mass-market applications 13 .

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BibTeXRIS

Sun, Shuman, Wang, Beichen (ORCID:0000000154431875), Liu, Kaikai (ORCID:0000000213609646), Harrington, Mark, Tabatabaei, Fatemehsadat (ORCID:0000000313663658), Liu, Ruxuan, Wang, Jiawei (ORCID:0000000257965220), Hanifi, Samin, Morgan, Jesse, Jahanbozorgi, Mandana, Yang, Zijiao, Bowers, Steven, Morton, Paul (ORCID:0000000326492536), Nelson, Karl, Beling, Andreas, Blumenthal, Daniel (ORCID:0000000217357220), Yi, Xu (ORCID:0000000224851104). 2024-03-06. Integrated optical frequency division for microwave and mmWave generation. https://doi.org/10.1038/s41586-024-07057-0

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