International audienceGold films do not adhere well on glass substrates, so plasmonics experiments typically use a thin adhesion layer of titanium or chromium to ensure a proper adhesion between the gold film and the glass substrate. While the absorption of light into gold structures is largely used to generate heat and control the temperature at the nanoscale, the influence of the adhesion layer on this process is largely overlooked. Here, we quantify the role of the adhesion layer in determining the local temperature increase around a single nanohole illuminated by a focused infrared laser. Despite their nanometer thickness, adhesion layers can absorb a greater fraction of the incoming infrared light than the 100 nm thick gold layer leadi...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
We present a study on the temperature response of the plasmon peak of gold nanoparticles (AuNPs) com...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
International audienceGold films do not adhere well on glass substrates, so plasmonics experiments t...
International audiencePlasmonic nanoapertures generate strong field gradients enabling efficient opt...
International audienceSince the early 2000s, the experimental and theoretical studies of phototherma...
A nanoscale layer of chromium or titanium is commonly used in plasmonic nanoantennas to firmly adher...
We used a thin-film thermocouple to detect the thermal effect of surface plasmons excited in Au nano...
This work investigates the heat delivered by a mono-layer 1D grating of gold nanoparticles (GNPs) cr...
The localized-surface-plasmon resonance (LSPR) of gold nanoparticles (Au NPs) depends sensitively on...
An ultrathin gold island film is developed showing efficient temperature sensing when maintaining at...
The plasmonic heating of dielectric coated gold nanorod has been studied under steady state conditio...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
We have investigated the heat generation from gold nanoparticles resulting from their local plasma r...
We report a self-assisted optothermal trapping and patterning of gold nanorods (GNRs) on glass surfa...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
We present a study on the temperature response of the plasmon peak of gold nanoparticles (AuNPs) com...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
International audienceGold films do not adhere well on glass substrates, so plasmonics experiments t...
International audiencePlasmonic nanoapertures generate strong field gradients enabling efficient opt...
International audienceSince the early 2000s, the experimental and theoretical studies of phototherma...
A nanoscale layer of chromium or titanium is commonly used in plasmonic nanoantennas to firmly adher...
We used a thin-film thermocouple to detect the thermal effect of surface plasmons excited in Au nano...
This work investigates the heat delivered by a mono-layer 1D grating of gold nanoparticles (GNPs) cr...
The localized-surface-plasmon resonance (LSPR) of gold nanoparticles (Au NPs) depends sensitively on...
An ultrathin gold island film is developed showing efficient temperature sensing when maintaining at...
The plasmonic heating of dielectric coated gold nanorod has been studied under steady state conditio...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
We have investigated the heat generation from gold nanoparticles resulting from their local plasma r...
We report a self-assisted optothermal trapping and patterning of gold nanorods (GNRs) on glass surfa...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...
We present a study on the temperature response of the plasmon peak of gold nanoparticles (AuNPs) com...
Plasmonic antennas are well-known and extremely powerful platforms for optical spectroscopy, sensing...