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Integrated optical frequency division for microwave and mmWave generation

  • Shuman Sun,
  • Beichen Wang,
  • Kaikai Liu,
  • Mark W. Harrington,
  • Fatemehsadat Tabatabaei,
  • Ruxuan Liu,
  • Jiawei Wang,
  • Samin Hanifi,
  • Jesse S. Morgan,
  • Mandana Jahanbozorgi,
  • Zijiao Yang,
  • Steven M. Bowers,
  • Paul A. Morton,
  • Karl D. Nelson,
  • Andreas Beling,
  • Daniel J. Blumenthal,
  • Xu Yi

摘要

The generation of ultra-low-noise microwave and mmWave in miniaturized, chip-based platforms can transform communication, radar and sensing systems13. 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 approaches47. 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 cavity8,9 and is divided down from optical to mmWave frequency by using soliton microcombs generated in a waveguide-coupled microresonator1012. 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 applications13.