\u3cp\u3eOptical detectors require the efficient collection of incident light onto a photodetector. Refractive or reflective optics are commonly used to increase the collected power. However, in the absence of losses, such optics conserve etendue and therefore pose a limit on the field of view and the active area of the detector. A promising method to overcome this limitation is to use an intermediate layer of fluorescent material that omnidirectionally absorbs the incident light and preferentially emits toward the photodetector. We demonstrate here that plasmonic nanoantenna phased arrays are a promising platform to improve the emission efficiency of thin luminescent layers and provide an efficient method to reduce optical etendue. In part...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
In this thesis, we investigate the manipulation of light emission for solid state lighting (SSL) usi...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Linear arrays of noble metal nanoparticles, supporting Bragg plasmonic resonances, are proposed as o...
Nanoantennas have been used in a wide range of applications in sensing, spectroscopy, and imaging-in...
Nanoantennas have been used in a wide range of applications in sensing, spectroscopy, and imaging-in...
We present computational analysis of nanoantenna arrays for imaging and sensing applications at opti...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
In this thesis, we investigate the manipulation of light emission for solid state lighting (SSL) usi...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Optical detectors require the efficient collection of incident light onto a photodetector. Refractiv...
Linear arrays of noble metal nanoparticles, supporting Bragg plasmonic resonances, are proposed as o...
Nanoantennas have been used in a wide range of applications in sensing, spectroscopy, and imaging-in...
Nanoantennas have been used in a wide range of applications in sensing, spectroscopy, and imaging-in...
We present computational analysis of nanoantenna arrays for imaging and sensing applications at opti...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
The electrodynamic modeling of linear arrays of noble metal nanoantennas reveals that plasmonic Brag...
In this thesis, we investigate the manipulation of light emission for solid state lighting (SSL) usi...