English

17,000 %/W Second Harmonic Conversion Efficiency in Single Crystalline Aluminum Nitride Microresonators

Optics 2018-09-26 v3 Applied Physics

Abstract

High quality factor optical microcavities have been employed in a variety of material systems to enhance nonlinear optical interactions. While single-crystalline aluminum nitride microresonators have recently emerged as a low loss platform for integrated nonlinear optics such as four wave mixing and Raman lasing, few studies have investigated this material for second-harmonic generation. In this Letter, we demonstrate an optimized fabrication of dually-resonant phase-matched ring resonators from epitaxial aluminum nitride thin films. An unprecendented second-harmonic generation efficiency of 17,000%/W is obtained in the low power regime and pump depletion is observed at a relatively low input power of 3.5 mW. This poses epitaxial aluminum nitride as the highest efficiency second-harmonic generator among current integrated platforms.

Keywords

Cite

@article{arxiv.1807.09638,
  title  = {17,000 %/W Second Harmonic Conversion Efficiency in Single Crystalline Aluminum Nitride Microresonators},
  author = {Alexander W. Bruch and Xianwen Liu and Xiang Guo and Joshua B. Surya and Zheng Gong and Liang Zhang and Junxi Wang and Jianchang Yan and Hong X. Tang},
  journal= {arXiv preprint arXiv:1807.09638},
  year   = {2018}
}
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