English

Triangular nanobeam photonic cavities in single crystal diamond

Quantum Physics 2015-05-20 v1 Optics

Abstract

Diamond photonics provides an attractive architecture to explore room temperature cavity quantum electrodynamics and to realize scalable multi-qubit computing. Here we review the present state of diamond photonic technology. The design, fabrication and characterization of a novel triangular cross section nanobeam cavity produced in a single crystal diamond is demonstrated. The present cavity design, based on a triangular cross section allows vertical confinement and better signal collection efficiency than that of slab-based nanocavities, and eliminates the need for a pre-existing membrane. The nanobeam is fabricated by Focused-Ion-Beam (FIB) patterning. The cavity is characterized by a confocal photoluminescence. The modes display quality factors of Q ~220 and are deviated in wavelength by only ~1.7nm from the NV- color center zero phonon line (ZPL). The measured results are found in good agreement with 3D Finite-Difference-Time-Domain (FDTD) calculations. A more advanced cavity design with Q=22,000 is modeled, showing the potential for high-Q implementations using the triangular cavity design. The prospects of this concept and its application to spin non-demolition measurement and quantum computing are discussed.

Keywords

Cite

@article{arxiv.1101.1367,
  title  = {Triangular nanobeam photonic cavities in single crystal diamond},
  author = {Igal Bayn and Boris Meyler and Joseph Salzman and Rafi Kalish},
  journal= {arXiv preprint arXiv:1101.1367},
  year   = {2015}
}

Comments

18 pages,7 figures

R2 v1 2026-06-21T17:08:43.789Z