Photothermal heaters are important devices for optical switches and memories based on the thermo-optic/magneto-optic effect and phase change materials. We demonstrated photothermal heating in Si plasmonic waveguides loaded with Co thin films by measuring the resistance change upon inputting transverse-magnetic (TM) mode light. Temperature rise is proportional to the light intensity with clear polarization dependence. The photothermal conversion efficiency was estimated at 36 K/mW and maximum temperature rise was estimated at 221 K at steady state upon the inputting 6.3 mW TM mode light for the 400 nm-wide, 8 µm-long and 189 nm-thick Co film deposited on the Si wire waveguide with 129 nm-thick SiO2 buffer layer. The method to increase the ef...
International audienceWe report on photo-thermal modulation of thin film surface plasmon polaritons ...
Traditional temperature detection has limitations in terms of sensing accuracy and response time, wh...
Numerous applications are based on the capability of plasmonic nanoparticles to locally increase the...
Side by side with the great advantages of plasmonics in nanoscale light confinement, the inevitable ...
We develop a photothermal technology to control optical heating of polymer and liquid crystal films ...
We describe studies on photothermal heating of a PMMA polymer films using a refractory plasmon TiN m...
Abstract We theoretically and numerically investigated the photothermal switching of a Mach-Zehnder ...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
A plasmon-polariton waveguide is investigated for its thermo-optic capability for the first time in ...
This dissertation prompts on the research and development of a new real-time, reusable, and reversib...
The properties of thermal radiation exchange between hot and cold objects can be strongly modified i...
Materials inside nuclear reactors are exposed to extreme conditions, which include high temperature,...
Emission of electromagnetic radiation due to the temperature of a body is an inherent property in na...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
International audienceWe report on photo-thermal modulation of thin film surface plasmon polaritons ...
Traditional temperature detection has limitations in terms of sensing accuracy and response time, wh...
Numerous applications are based on the capability of plasmonic nanoparticles to locally increase the...
Side by side with the great advantages of plasmonics in nanoscale light confinement, the inevitable ...
We develop a photothermal technology to control optical heating of polymer and liquid crystal films ...
We describe studies on photothermal heating of a PMMA polymer films using a refractory plasmon TiN m...
Abstract We theoretically and numerically investigated the photothermal switching of a Mach-Zehnder ...
Plasmonic absorption of light can lead to significant local heating in metallic nanostructures, an e...
A plasmon-polariton waveguide is investigated for its thermo-optic capability for the first time in ...
This dissertation prompts on the research and development of a new real-time, reusable, and reversib...
The properties of thermal radiation exchange between hot and cold objects can be strongly modified i...
Materials inside nuclear reactors are exposed to extreme conditions, which include high temperature,...
Emission of electromagnetic radiation due to the temperature of a body is an inherent property in na...
Plasmonic resonances are characterized by enhanced optical near field and subwavelength power conf...
Nonradiative decay of plasmons in metallic nanostructures offers unique means for light-to-heat conv...
International audienceWe report on photo-thermal modulation of thin film surface plasmon polaritons ...
Traditional temperature detection has limitations in terms of sensing accuracy and response time, wh...
Numerous applications are based on the capability of plasmonic nanoparticles to locally increase the...