Moshe Harats

Senior Academic

Highly Directional Room-Temperature Single Photon Device

Nitzan Livneh, Moshe G. Harats, Daniel Istrati, Hagai S. Eisenberg, Ronen Rapaport

One of the most important challenges in modern quantum optical applications is the demonstration of efficient, scalable, on-chip single photon sources, which can operate at room temperature. In this paper we demonstrate a room-temperature single photon source based on a single colloidal nanocrystal quantum dot positioned inside a circular bulls-eye shaped hybrid metal-dielectric nanoantenna. Experimental results show that 20% of the photons are emitted into a very low numerical aperture (NA < 0.25), a 20-fold improvement over a free-standing quantum dot, and with a probability of more than 70% for a single photon emission. With an NA = 0.65 more than 35% of the single photon emission is collected. The single photon purity is limited only by emission from the metal, an obstacle that can be bypassed with careful design and fabrication. The concept presented here can be extended to many other types of quantum emitters. Such a device paves a promising route for a high purity, high efficiency, on-chip single photon source operating at room temperature.

Publication language English
Pages 2527-2532
Volume 16
Issue number 4
Publication status Published - 13.04.2016

Keywords

colloidal nanocrystals
nano-optical devices
nanoantenna
plasmonics
quantum dots
single photon source

ASJC Scopus subject areas

Bioengineering
General Chemistry
General Materials Science
Condensed Matter Physics
Mechanical Engineering