The emission rate of a point dipole can be strongly increased in the presence of a well-designed optical antenna. Yet, optical antenna design is largely based on radio-frequency rules, ignoring, e.g., Ohmic losses and non-negligible field penetration in metals at optical frequencies. Here, we combine reciprocity and Poynting’s theorem to derive a set of optical-frequency antenna design rules for benchmarking and optimizing the performance of optical antennas driven by single quantum emitters. Based on these findings a novel plasmonic cavity antenna design is presented exhibiting a considerably improved performance compared to a reference two-wire antenna. Our work will be useful for the design of high-performance optical antennas and nanore...
Optical nanoantennas, especially of the dipole type, have been theoretically and experimentally demo...
Plasmonic nanoantennas permit many functional components for future generations of nanoscale optical...
We have fabricated nanometer-scale gold dipole antennas designed to be resonant at optical frequenci...
The emission rate of a point dipole can be strongly increased in the presence of a well-designed opt...
Antennas have been used for over a century as emitters, scatterers and receivers of electromagnetic ...
Here we explore the radiation features of optical nanoantennas, analyzing the concepts of optical in...
International audienceWe theoretically demonstrate highly efficient optical coupling between a singl...
We report on a new class of optical antennas that shorten the excited-state lifetime of optical emit...
We report on a new class of optical antennas that shorten the excited-state lifetime of optical emit...
Radio antennas have long been used to increase the amount of radiated power and modify the emission ...
Suitably shaped metal nanostructures act as resonant optical antennas that efficiently collect light...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
Nanometallic optical antennas are rapidly gaining popularity in applications that require exquisite ...
Performing far-field microscope polarization spectroscopy and finite element method simulations, we ...
Suitably shaped metal nano structures act as resonant optical antennas that efficiently collect ligh...
Optical nanoantennas, especially of the dipole type, have been theoretically and experimentally demo...
Plasmonic nanoantennas permit many functional components for future generations of nanoscale optical...
We have fabricated nanometer-scale gold dipole antennas designed to be resonant at optical frequenci...
The emission rate of a point dipole can be strongly increased in the presence of a well-designed opt...
Antennas have been used for over a century as emitters, scatterers and receivers of electromagnetic ...
Here we explore the radiation features of optical nanoantennas, analyzing the concepts of optical in...
International audienceWe theoretically demonstrate highly efficient optical coupling between a singl...
We report on a new class of optical antennas that shorten the excited-state lifetime of optical emit...
We report on a new class of optical antennas that shorten the excited-state lifetime of optical emit...
Radio antennas have long been used to increase the amount of radiated power and modify the emission ...
Suitably shaped metal nanostructures act as resonant optical antennas that efficiently collect light...
This dissertation presents a theoretical study of the design of optical nanoantennas and antenna arr...
Nanometallic optical antennas are rapidly gaining popularity in applications that require exquisite ...
Performing far-field microscope polarization spectroscopy and finite element method simulations, we ...
Suitably shaped metal nano structures act as resonant optical antennas that efficiently collect ligh...
Optical nanoantennas, especially of the dipole type, have been theoretically and experimentally demo...
Plasmonic nanoantennas permit many functional components for future generations of nanoscale optical...
We have fabricated nanometer-scale gold dipole antennas designed to be resonant at optical frequenci...