We introduce an optical microscopy technique aimed at characterizing the heat generation arising from nanostructures, in a comprehensive and quantitative manner. Namely, the technique permits (i) mapping the temperature distribution around the source of heat, (ii) mapping the heat power density delivered by the source, and (iii) retrieving the absolute absorption cross section of light-absorbing structures. The technique is based on the measure of the thermal-induced refractive index variation of the medium surrounding the source of heat. The measurement is achieved using an association of a regular CCD camera along with a modified Hartmann diffraction grating. Such a simple association makes this technique straightforward to implement on a...
International audienceHeating on the microscale using focused lasers gave rise to recent application...
Plasmonic materials can form viable optical absorbers that offer new possibilities for device design...
Gold nanoparticles (NPs) have tremendous potential in biomedicine. They can be used as absorbing lab...
International audienceWe introduce an optical microscopy technique aimed at characterizing the heat ...
Measuring local heat generation and dissipation in nanomaterials is critical for understanding the b...
In numerous applications of energy harvesting via transformation of light into heat the focus recent...
Tesina realitzada en col.laboració amb IFCO i CellexIn the course of this work a novel microscope wa...
International audienceThe use of illuminated gold nanoparticles as ideal nanosources of heat is the ...
Measurement of local temperature using label-free optical methods has gained importance as a pivotal...
In recent years, following the miniaturization and integration of passive and active nanophotonic de...
The field of thermoplasmonics has thrived in the past decades because it uniquely provides remotely ...
The photothermal heterodyne imaging technique enabled studies of individual weakly absorbing nano-ob...
The physicochemical properties of nanoparticles (NPs) strongly rely on their colloidal stability, an...
Thermophoresis denotes the motion of particles along temperature gradients. Insignificant in most da...
Photothermal microscopy enables detection of nanometer-sized objects solely based on their absorptio...
International audienceHeating on the microscale using focused lasers gave rise to recent application...
Plasmonic materials can form viable optical absorbers that offer new possibilities for device design...
Gold nanoparticles (NPs) have tremendous potential in biomedicine. They can be used as absorbing lab...
International audienceWe introduce an optical microscopy technique aimed at characterizing the heat ...
Measuring local heat generation and dissipation in nanomaterials is critical for understanding the b...
In numerous applications of energy harvesting via transformation of light into heat the focus recent...
Tesina realitzada en col.laboració amb IFCO i CellexIn the course of this work a novel microscope wa...
International audienceThe use of illuminated gold nanoparticles as ideal nanosources of heat is the ...
Measurement of local temperature using label-free optical methods has gained importance as a pivotal...
In recent years, following the miniaturization and integration of passive and active nanophotonic de...
The field of thermoplasmonics has thrived in the past decades because it uniquely provides remotely ...
The photothermal heterodyne imaging technique enabled studies of individual weakly absorbing nano-ob...
The physicochemical properties of nanoparticles (NPs) strongly rely on their colloidal stability, an...
Thermophoresis denotes the motion of particles along temperature gradients. Insignificant in most da...
Photothermal microscopy enables detection of nanometer-sized objects solely based on their absorptio...
International audienceHeating on the microscale using focused lasers gave rise to recent application...
Plasmonic materials can form viable optical absorbers that offer new possibilities for device design...
Gold nanoparticles (NPs) have tremendous potential in biomedicine. They can be used as absorbing lab...