We report on the low-energy, electrical generation of light beams in specific directions from planar elliptical microstructures. The emission direction of the beam is determined by the microstructure eccentricity. A very simple, broadband, optical antenna design is used, which consists of a single elliptical slit etched into a gold film. The light beam source is driven by an electrical nanosource of surface plasmon polaritons (SPP) that is located at one focus of the ellipse. In this study, SPPs are generated through inelastic electron tunneling between a gold surface and the tip of a scanning tunneling microscope
Directional antennas revolutionized modern day telecommunication by enabling precise beaming of radi...
ABSTRACT: Plasmonics is considered as one of the most promising candidates for implementing the next...
The work of this thesis has been devoted to a few applications of antenna concepts for the manipulat...
International audienceWe report on the low-energy, electrical generation of light beams in specific ...
International audienceA local, low-energy, electrical method for the excitation of localized and pro...
We propose a new method for the directional excitation of surface plasmon polaritons by a metal nano...
International audienceSurface plasmon polariton (SPP) beams with an in-plane angular spread of 8 deg...
Access to surface plasmon polaritons (SPPs) with directional control excited by electrical means is ...
International audienceThe production of cylindrical vector beams from a low-energy, electric, micros...
Electrically driven sources of photons offer a unique platform for realising applications such as be...
Surface plasmon polaritons are electromagnetic waves that propagate tightly bound to metal surfaces....
The injection of a beam of free 50 keV electrons into an unstructured gold surface creates a highly ...
Background: Electrically controlled optical metal antennas are an emerging class of nanodevices enab...
The ability to control the directivity of light emission from single nanoscale emitters such as quan...
International audienceWe report on the angular distribution, polarization, and spectrum of the light...
Directional antennas revolutionized modern day telecommunication by enabling precise beaming of radi...
ABSTRACT: Plasmonics is considered as one of the most promising candidates for implementing the next...
The work of this thesis has been devoted to a few applications of antenna concepts for the manipulat...
International audienceWe report on the low-energy, electrical generation of light beams in specific ...
International audienceA local, low-energy, electrical method for the excitation of localized and pro...
We propose a new method for the directional excitation of surface plasmon polaritons by a metal nano...
International audienceSurface plasmon polariton (SPP) beams with an in-plane angular spread of 8 deg...
Access to surface plasmon polaritons (SPPs) with directional control excited by electrical means is ...
International audienceThe production of cylindrical vector beams from a low-energy, electric, micros...
Electrically driven sources of photons offer a unique platform for realising applications such as be...
Surface plasmon polaritons are electromagnetic waves that propagate tightly bound to metal surfaces....
The injection of a beam of free 50 keV electrons into an unstructured gold surface creates a highly ...
Background: Electrically controlled optical metal antennas are an emerging class of nanodevices enab...
The ability to control the directivity of light emission from single nanoscale emitters such as quan...
International audienceWe report on the angular distribution, polarization, and spectrum of the light...
Directional antennas revolutionized modern day telecommunication by enabling precise beaming of radi...
ABSTRACT: Plasmonics is considered as one of the most promising candidates for implementing the next...
The work of this thesis has been devoted to a few applications of antenna concepts for the manipulat...