Plasmonic structures are renowned for their capability to efficiently convert light into heat at the nanoscale. However, despite the possibility to generate deep sub-wavelength electromagnetic hot spots, the formation of extremely localized thermal hot spots is an open challenge of research, simply because of the diffusive spread of heat along the whole metallic nanostructure. Here this challenge is tackled by exploiting single gold nanocones. It is theoretically shown how these structures can indeed realize extremely high temperature gradients within the metal, leading to deep sub-wavelength thermal hot spots, owing to their capability of concentrating light at the apex under resonant conditions even under continuous wave illumination. A 3...
International audiencePlasmonic nanoapertures generate strong field gradients enabling efficient opt...
International audienceThe illumination of a dimer metallic nanostructure is known to produce an in- ...
In this article, we present a comprehensive investigation of the photothermal properties of plasmoni...
Plasmonic structures are renowned for their capability to efficiently convert light into heat at the...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
International audienceSurface plasmons have been used recently to generate heat nanosources, the int...
Metallic nanostructures supporting localized surface plasmon resonances have the potential to both g...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
International audienceIn this article, we present a comprehensive investigation of the photothermal ...
Since the early 2000s, the experimental and theoretical studies of photothermal effects in plasmonic...
<p>Plasmonic materials can form viable optical absorbers that offer new possibilities for device des...
Focusing light on the nanoscale in order to create intense optical or thermal nanosources is probabl...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
International audiencePlasmonic nanoapertures generate strong field gradients enabling efficient opt...
International audienceThe illumination of a dimer metallic nanostructure is known to produce an in- ...
In this article, we present a comprehensive investigation of the photothermal properties of plasmoni...
Plasmonic structures are renowned for their capability to efficiently convert light into heat at the...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
International audienceRecent years have seen a growing interest in using metal nanostructures to con...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
International audienceSurface plasmons have been used recently to generate heat nanosources, the int...
Metallic nanostructures supporting localized surface plasmon resonances have the potential to both g...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
International audienceIn this article, we present a comprehensive investigation of the photothermal ...
Since the early 2000s, the experimental and theoretical studies of photothermal effects in plasmonic...
<p>Plasmonic materials can form viable optical absorbers that offer new possibilities for device des...
Focusing light on the nanoscale in order to create intense optical or thermal nanosources is probabl...
Thermoplasmonics is a new field of Plasmonics in which metallic nanostructures are used to generated...
International audiencePlasmonic nanoapertures generate strong field gradients enabling efficient opt...
International audienceThe illumination of a dimer metallic nanostructure is known to produce an in- ...
In this article, we present a comprehensive investigation of the photothermal properties of plasmoni...