Plasmonic nano-antennas constructed by placing a sub-wavelength dielectric (e.g., air) gap between two metallic regions can generate high intense electric fields in small regions which can be used to excite nonlinear effects such as the Surface Enhanced Raman Scattering or to visualize nano-particles. However, since nano-antennas are passive devices, they need to be driven by external light sources. In this article, we study effective ways to combine photonic wire lasers and nano-antennas. We show that, by using linear tapers as couplers, we can efficiently couple light from lasers into nano-antennas and further enhance the electric fields inside the nano-antennas
Plasmonic nanoantennas can generate high-intensity electric fields in a very small area. However, be...
We report direct coupling of plasmonic and photonic nanowires using ultracompact near-field interact...
Multipolar transitions other than electric dipoles are generally too weak to be observed at optical ...
One of the main goals of photonic integration is to combine different components that are capable of...
Optical dipole nano-antennas are passive devices needing light from external sources. In this work, ...
Surface plasmon polaritons (SPPs) are evanescent electromagnetic waves propagating at the interface ...
An optical dipole nano-antenna can be constructed by placing a sub-wavelength dielectric (e.g., air...
Optical dipole nano-antennas are passive devices needing light from external sources. In this work, ...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
In this article, a new and flexible approach to control the electric field enhancement of bow-tie na...
The antenna-mediated coupling of light into Ag nanowire is investigated both in experiments and simu...
The antenna-mediated coupling of light into Ag nanowire is investigated both in experiments and simu...
International audienceWe show that the near-field coupling between a photonic crystal microlaser and...
Plasmonic nanoantennas can generate high-intensity electric fields in a very small area. However, be...
We report direct coupling of plasmonic and photonic nanowires using ultracompact near-field interact...
Multipolar transitions other than electric dipoles are generally too weak to be observed at optical ...
One of the main goals of photonic integration is to combine different components that are capable of...
Optical dipole nano-antennas are passive devices needing light from external sources. In this work, ...
Surface plasmon polaritons (SPPs) are evanescent electromagnetic waves propagating at the interface ...
An optical dipole nano-antenna can be constructed by placing a sub-wavelength dielectric (e.g., air...
Optical dipole nano-antennas are passive devices needing light from external sources. In this work, ...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
The research area of plasmonics promises devices with ultrasmall footprint operating at ultrafast sp...
In this article, a new and flexible approach to control the electric field enhancement of bow-tie na...
The antenna-mediated coupling of light into Ag nanowire is investigated both in experiments and simu...
The antenna-mediated coupling of light into Ag nanowire is investigated both in experiments and simu...
International audienceWe show that the near-field coupling between a photonic crystal microlaser and...
Plasmonic nanoantennas can generate high-intensity electric fields in a very small area. However, be...
We report direct coupling of plasmonic and photonic nanowires using ultracompact near-field interact...
Multipolar transitions other than electric dipoles are generally too weak to be observed at optical ...