One of the classical limitations for the investigation of the local rheology of small scale soft objects and/or confined fluids is related to the difficulty to control mechanical contact and its consequences. In order to overcome these issues, we implement a new local, active, fast and contactless optical strategy, called optorheology, which is based on both the optical radiation pressure of a laser wave to dynamically deform a fluid interface and interferometry to probe this deformation with nanometric resolution. This optical approach is first validated by measuring the surface tension and the viscosity of transparent Newtonian liquids. We also show how non-equilibrium situations, such as continuous evaporation, can be used to deduce the ...
This thesis work is dedicated to liquid interface deformations from a continuous laser wave. We demo...
We report the noncontact measurement of the viscoelastic property of polymer thin films in a liquid ...
Abstract Although, many conventional approaches have been used to measure viscosity of fluids, most ...
Laser-induced thermocapillary deformation of liquid surfaces has emerged as a promising tool to prec...
Recent experimental developments showed that the use of the radiation pressure, induced by a continu...
Recent experimental developments showed that the use of the radiation pressure, induced by a continu...
We demonstrated that viscosity measurement using a spinning laser-trapped microsphere depends on the...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
The formation, deformation, and break-up of liquid interfaces are ubiquitous phenomena in nature. In...
The dynamics of thermal fluctuations of a medium reveals the properties of this medium, without the ...
We present a method to perform in situ microrheological measurements on monolayers of soft materials...
The design of an instrument capable of opto-mechanical studies of the rheology of viscoelastic polym...
In this dissertation we use digital holographic quantitative phase microscopy to observe and measure...
5 We present a detailed study of the dynamics of soft liquid interfaces undergoing viscous stresses ...
Using optical trapping, we have measured anisotropic and distance-dependent mobility of a colloidal ...
This thesis work is dedicated to liquid interface deformations from a continuous laser wave. We demo...
We report the noncontact measurement of the viscoelastic property of polymer thin films in a liquid ...
Abstract Although, many conventional approaches have been used to measure viscosity of fluids, most ...
Laser-induced thermocapillary deformation of liquid surfaces has emerged as a promising tool to prec...
Recent experimental developments showed that the use of the radiation pressure, induced by a continu...
Recent experimental developments showed that the use of the radiation pressure, induced by a continu...
We demonstrated that viscosity measurement using a spinning laser-trapped microsphere depends on the...
During the last decades, microrheology attracted a significant attention thanks to the possibility o...
The formation, deformation, and break-up of liquid interfaces are ubiquitous phenomena in nature. In...
The dynamics of thermal fluctuations of a medium reveals the properties of this medium, without the ...
We present a method to perform in situ microrheological measurements on monolayers of soft materials...
The design of an instrument capable of opto-mechanical studies of the rheology of viscoelastic polym...
In this dissertation we use digital holographic quantitative phase microscopy to observe and measure...
5 We present a detailed study of the dynamics of soft liquid interfaces undergoing viscous stresses ...
Using optical trapping, we have measured anisotropic and distance-dependent mobility of a colloidal ...
This thesis work is dedicated to liquid interface deformations from a continuous laser wave. We demo...
We report the noncontact measurement of the viscoelastic property of polymer thin films in a liquid ...
Abstract Although, many conventional approaches have been used to measure viscosity of fluids, most ...