English

High-Q optical nanocavities in bulk single-crystal diamond

Mesoscale and Nanoscale Physics 2015-06-22 v1 Optics

Abstract

Single-crystal diamond, with its unique optical, mechanical and thermal properties, has emerged as a promising material with applications in classical and quantum optics. However, the lack of heteroepitaxial growth and scalable fabrication techniques remain major limiting factors preventing more wide-spread development and application of diamond photonics. In this work, we overcome this difficulty by adapting angled-etching techniques, previously developed for realization of diamond nanomechanical resonators, to fabricate racetrack resonators and photonic crystal cavities in bulk single-crystal diamond. Our devices feature large optical quality factors, in excess of 10^5, and operate over a wide wavelength range, spanning visible and telecom. These newly developed high-Q diamond optical nanocavities open the door for a wealth of applications, ranging from nonlinear optics and chemical sensing, to quantum information processing and cavity optomechanics.

Keywords

Cite

@article{arxiv.1408.5973,
  title  = {High-Q optical nanocavities in bulk single-crystal diamond},
  author = {Michael J. Burek and Yiwen Chu and Madelaine S. Z. Liddy and Parth Patel and Jake Rochman and Srujan Meesala and Wooyoung Hong and Qimin Quan and Mikhail D. Lukin and Marko Lončar},
  journal= {arXiv preprint arXiv:1408.5973},
  year   = {2015}
}