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Aluminum nitride integrated photonics platform for the ultraviolet to visible spectrum

  • Tsung Ju Lu
  • , Michael Fanto
  • , Hyeongrak Choi
  • , Paul Thomas
  • , Jeffrey Steidle
  • , Sara Mouradian
  • , Wei Kong
  • , Di Zhu
  • , Hyowon Moon
  • , Karl Berggren
  • , Jeehwan Kim
  • , Mohammad Soltani
  • , Stefan Preble
  • , Dirk Englund
  • Massachusetts Institute of Technology
  • Rochester Institute of Technology
  • Air Force Research Laboratory
  • BBN Technologies

Research output: Contribution to journalArticlepeer-review

171 Scopus citations

Abstract

We demonstrate a wide-bandgap semiconductor photonics platform based on nanocrystalline aluminum nitride (AlN) on sapphire. This photonics platform guides light at low loss from the ultraviolet (UV) to the visible spectrum. We measure ring resonators with intrinsic quality factor (Q) exceeding 170,000 at 638 nm and Q >20,000 down to 369.5 nm, which shows a promising path for low-loss integrated photonics in UV and visible spectrum. This platform opens up new possibilities in integrated quantum optics with trapped ions or atom-like color centers in solids, as well as classical applications including nonlinear optics and on-chip UV-spectroscopy.

Original languageEnglish
Pages (from-to)11147-11160
Number of pages14
JournalOptics Express
Volume26
Issue number9
DOIs
StatePublished - Apr 30 2018

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