Infrared (IR) antennas made of metallic nanostructures are widely tunable from the near- to the far-IR range. They can be utilized for a variety of applications such as light harvesting and photonic filters, and their structural linear or circular anisotropy can be exploited to further enhance the sensitivity of spectroscopic measurements. Here gold dendritic fractal structures that were optimized to exhibit multiple resonances in the mid-IR range were characterized using a scattering-type scanning near-field optical IR microscope. The spatially resolved IR maps associated with the individual modes serve as a basis to understand the mode evolution between each fractal generation
In this work, we show that modulating the fractal dimension of nanoporous gold allows its effective ...
We investigate the plasmonic behavior of Koch snowflake fractal geometries and their possible applic...
International audienceWe report on the observation of second-order infrared (IR) plasmon resonances ...
Metallic nanostructures that exhibit tailored optical resonances spanning from the near to mid-infra...
The structural characteristics of plasmonic nanostructures directly influence their plasmonic proper...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Metal nanoarchitectures producing optical responses in the visible and near-infrared form the founda...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Metallic nanostructures that exhibit plasmon resonances in the mid-infrared range are of particular ...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
In this work, we show that modulating the fractal dimension of nanoporous gold allows its effective ...
Cataloged from PDF version of article.We introduced fractal geometry to the conventional bowtie ante...
Theory predicts a distinct spectral shift between the near- and far-field optical response of plasmo...
In this work, we show that modulating the fractal dimension of nanoporous gold allows its effective ...
We investigate the plasmonic behavior of Koch snowflake fractal geometries and their possible applic...
International audienceWe report on the observation of second-order infrared (IR) plasmon resonances ...
Metallic nanostructures that exhibit tailored optical resonances spanning from the near to mid-infra...
The structural characteristics of plasmonic nanostructures directly influence their plasmonic proper...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...
Fractal-shaped nanoantennas have a large potential to enable multiband devices for surface-enhanced ...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Metal nanoarchitectures producing optical responses in the visible and near-infrared form the founda...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
Metallic nanostructures that exhibit plasmon resonances in the mid-infrared range are of particular ...
Deterministic fractal antennas are employed to realize multimodal plasmonic devices. Such structures...
In this work, we show that modulating the fractal dimension of nanoporous gold allows its effective ...
Cataloged from PDF version of article.We introduced fractal geometry to the conventional bowtie ante...
Theory predicts a distinct spectral shift between the near- and far-field optical response of plasmo...
In this work, we show that modulating the fractal dimension of nanoporous gold allows its effective ...
We investigate the plasmonic behavior of Koch snowflake fractal geometries and their possible applic...
International audienceWe report on the observation of second-order infrared (IR) plasmon resonances ...