Supporting Information Enhancement of single photon emission from nitrogen-vacancy centers with TiN/(Al,Sc)N hyperbolic metamaterial
نویسندگان
چکیده
School of Electrical and Computer Engineering, Purdue University, West Lafayette, IN 47907, USA Birck Nanotechnology Center, Purdue University, West Lafayette, IN 47907, USA Photonic Nano-Meta Technologies, ul. Lugovaya 4, Skolkovo Innovation Center, Moscow, 143026, Russia Moscow Institute of Physics and Technology, Institutskiy per. 9, Dolgoprudny, Moscow Region, 141700, Russia Agricultural and Biological Engineering, Purdue University, West Lafayette, IN 47907, USA Russian Quantum Center, ul. Novaya 100, BC "Ural", Skolkovo Innovation Center, Moscow Region, 143025, Russia School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, Scotland EH14 4AS, United Kingdom Lebedev Physical Institute RAS, Leninskij pr. 53, Moscow, 119991, Russia
منابع مشابه
Enhancement of single–photon emission from nitrogen–vacancy centers with TiN/(Al,Sc)N hyperbolic metamaterial
P A P ER Abstract The broadband enhancement of single–photon emission from nitrogen-vacancy centers in nanodiamonds coupled to a planar multilayer metamaterial with hyperbolic dispersion is studied experimentally. The metamaterial is fabricated as an epitaxial metal/dielectric superlattice consisting of CMOS-compatible ceramics: titanium nitride (TiN) and aluminum scandium nitride (AlxSc1-xN). ...
متن کاملMetamaterials and Transformation Optics for Single-photon Emitters
We have experimentally demonstrated the broadband enhancement of single-photon emission from nanodiamond NV centers coupled to planar multilayer metamaterial with hyperbolic dispersion. A tapered metamaterial waveguide for efficient outcoupling of high-k metamaterial modes has been numerically studied and fabricated. Introduction: The major thrust of research in quantum photonics is to build qu...
متن کاملPatterning metamaterials for fast and efficient single-photon sources
Solid state quantum emitters are prime candidates to realize fast on-demand single-photon sources. The improvement in photon emission and collection efficiencies for quantum emitters, such as nitrogen-vacancy (NV) centers in diamond, can be achieved by using a near-field coupling to nanophotonic structures. Plasmonic metamaterial structures with hyperbolic dispersion have been previously demons...
متن کاملDiamond nanophotonics and applications in quantum science and technology
Diamond nanophotonics have evolved tremendously from the study of color centers in bulk single crystals and nanocrystals to their characterization in nanostructured environments. This development was facilitated by the ability to generate monolithic, sophisticated nanodevices in high quality single crystal diamond. Here, we present some recent contributions to the field of diamond nanophotonics...
متن کاملModification of the spontaneous emission rate of nitrogen-vacancy centers in diamond by coupling to plasmons
Nitrogen-vacancy centers in diamond are widely studied both as a testbed for solid state quantum optics and for their applications in quantum information processing and magnetometry. Here we demonstrate coupling of the nitrogen-vacancy centers to gap plasmons in metal nano-slits. We use diamond samples where nitrogen-vacancy centers are implanted tens of nanometers under the surface. Silver nan...
متن کامل