International audienceOptical nanoantennas have a great potential for enhancing light-matter interactions at the nanometer scale, yet fabrication accuracy and lack of scalability currently limit ultimate antenna performance and applications. In most designs, the region of maximum field localization and enhancement (i.e., hotspot) is not readily accessible to the sample because it is buried into the nanostructure. Moreover, current large-scale fabrication techniques lack reproducible geometrical control below 20nm. Here, we describe a new nanofabrication technique that applies planarization, etch back, and template stripping to expose the excitation hotspot at the surface, providing a major improvement over conventional electron beam lithogr...
We demonstrate a novel fabrication approach for high-throughput fabrication of engineered infrared p...
Using a new nanoplasmonic architecture and an optimized spacer, we observed the following: (a) the a...
Although three-dimensional shaping of metallic nanostructures is an important strategy for control a...
International audienceOptical nanoantennas have a great potential for enhancing light-matter interac...
Optical nanoantennas have a great potential for enhancing light-matter interactions at the nanomete...
We present a novel blurring-free stencil lithography patterning technique for high-throughput fabric...
We present a novel blurring-free stencil lithography patterning technique for high-throughput fabric...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
We demonstrate Purcell enhancements of-1000 from fluorescent molecules embedded in a plasmonic anten...
Strong electromagnetic field confinement and enhancement can be readily achieved in plasmonic nanoan...
Electromagnetic enhancement effects through localized surface plasmon resonance considerably amplify...
As the need to control and manipulate light on the nanoscale increases, intense expectations are bei...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
International audienceSingle molecule fluorescence techniques [1-3] are key for several applications...
Nanoplasmonic sensing relies on enhanced electromagnetic fields at the vicinity of nanostructured me...
We demonstrate a novel fabrication approach for high-throughput fabrication of engineered infrared p...
Using a new nanoplasmonic architecture and an optimized spacer, we observed the following: (a) the a...
Although three-dimensional shaping of metallic nanostructures is an important strategy for control a...
International audienceOptical nanoantennas have a great potential for enhancing light-matter interac...
Optical nanoantennas have a great potential for enhancing light-matter interactions at the nanomete...
We present a novel blurring-free stencil lithography patterning technique for high-throughput fabric...
We present a novel blurring-free stencil lithography patterning technique for high-throughput fabric...
The resonant excitation of free electrons in metallic nanostructures enables extreme near field inte...
We demonstrate Purcell enhancements of-1000 from fluorescent molecules embedded in a plasmonic anten...
Strong electromagnetic field confinement and enhancement can be readily achieved in plasmonic nanoan...
Electromagnetic enhancement effects through localized surface plasmon resonance considerably amplify...
As the need to control and manipulate light on the nanoscale increases, intense expectations are bei...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
International audienceSingle molecule fluorescence techniques [1-3] are key for several applications...
Nanoplasmonic sensing relies on enhanced electromagnetic fields at the vicinity of nanostructured me...
We demonstrate a novel fabrication approach for high-throughput fabrication of engineered infrared p...
Using a new nanoplasmonic architecture and an optimized spacer, we observed the following: (a) the a...
Although three-dimensional shaping of metallic nanostructures is an important strategy for control a...