textThis thesis presents a method to measure the linear viscoelastic response of fluids by tracking and analyzing the thermal, Brownian motion of suspended tracer particles, known as passive microrheology. The particle is confined in a harmonic optical trap and its one dimensional trajectory is obtained by a home-built split beam detection system, which works similar but responds faster than position detection with commercial quadrant photodiodes. The theory which is necessary to convert the particle trajectory into the complex shear modulus is derived in detail, pointing out that the commonly used Mason-Weitz method needs to be modified in order to obtain correct results at high frequencies due to hydrodynamic effects of the fluid. It foll...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
We present a comprehensive overview of microrheology, emphasizing the underlying theory, practical a...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
We present a data analysis procedure that provides the solution to a long-standing issue in microrhe...
We investigate the dynamics of microscopic flow vortices. We create flow vortices by rotation of bir...
Microrheology is the study of the flow and deformation of fluids on the micrometre scale. It has man...
Since their first appearance in the 1970s, optical tweezers have been successfully exploited for a v...
We present a controlled stress microviscometer with applications to complex fluids. It generates and...
Thanks to the pioneering works of Ashkin and coworkers, optical tweezers (OTs) have become an invalu...
Thanks to the pioneering works of Ashkin and coworkers, optical tweezers (OTs) have become an invalu...
textThe thermal velocity fluctuations of microscopic particles mediate the transition from microscop...
textThe thermal velocity fluctuations of microscopic particles mediate the transition from microscop...
Microrheology is the study of fluid flows and material deformations on a microscopic scale. The study ...
We use passive and active techniques to study microrheology of a biopolymer solution. The passive te...
Microrheology, the study of flow at the microscopic scale, has benefited immensely from a variety of...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
We present a comprehensive overview of microrheology, emphasizing the underlying theory, practical a...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
We present a data analysis procedure that provides the solution to a long-standing issue in microrhe...
We investigate the dynamics of microscopic flow vortices. We create flow vortices by rotation of bir...
Microrheology is the study of the flow and deformation of fluids on the micrometre scale. It has man...
Since their first appearance in the 1970s, optical tweezers have been successfully exploited for a v...
We present a controlled stress microviscometer with applications to complex fluids. It generates and...
Thanks to the pioneering works of Ashkin and coworkers, optical tweezers (OTs) have become an invalu...
Thanks to the pioneering works of Ashkin and coworkers, optical tweezers (OTs) have become an invalu...
textThe thermal velocity fluctuations of microscopic particles mediate the transition from microscop...
textThe thermal velocity fluctuations of microscopic particles mediate the transition from microscop...
Microrheology is the study of fluid flows and material deformations on a microscopic scale. The study ...
We use passive and active techniques to study microrheology of a biopolymer solution. The passive te...
Microrheology, the study of flow at the microscopic scale, has benefited immensely from a variety of...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...
We present a comprehensive overview of microrheology, emphasizing the underlying theory, practical a...
Microrheology is the study of the flow of materials over small scales. It is of particular interest ...