Two-Dimensional Photonic Crystal Slab Nanocavities on Bulk Single-Crystal Diamond
Name
1801.01151.pdf
Description
Submitted version
Size
1.14 MB
Format
Unknown
Checksum (MD5)
5c50440619e33026ac2098831ea49a12
Author(s) • •
Wan, Noel Heng Loon
Mouradian, Sara L
Englund, Dirk R.
Date Issued
2018
Journal
Applied Physics Letters
Publisher
AIP Publishing
Version
Original manuscript
Abstract
© 2018 Author(s). Color centers in diamond are promising spin qubits for quantum computing and quantum networking. In photon-mediated entanglement distribution schemes, the efficiency of the optical interface ultimately determines the scalability of such systems. Nano-scale optical cavities coupled to emitters constitute a robust spin-photon interface that can increase spontaneous emission rates and photon extraction efficiencies. In this work, we introduce the fabrication of 2D photonic crystal slab nanocavities with high quality factors and cubic wavelength mode volumes - directly in bulk diamond. This planar platform offers scalability and considerably expands the toolkit for classical and quantum nanophotonics in diamond.
MIT Department
Massachusetts Institute of Technology. Research Laboratory of Electronics
Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Terms of Use
Creative Commons Attribution-Noncommercial-Share Alike
Persistent DSpace Link
DOI of Published Version
https://doi.org/10.1063/1.5021349