Observation of the Brownian motion of a small probe interacting with its environment provides one of the main strategies for characterizing soft matter. Essentially, two counteracting forces govern the motion of the Brownian particle. First, the particle is driven by rapid collisions with the surrounding solvent molecules, referred to as thermal noise. Second, the friction between the particle and the viscous solvent damps its motion. Conventionally, the thermal force is assumed to be random and characterized by a Gaussian white noise spectrum. The friction is assumed to be given by the Stokes drag, suggesting that motion is overdamped at long times in particle tracking experiments, when inertia becomes negligible. However, as the particle ...
The equilibrium dynamics of a spherical particle immersed in a complex Maxwell fluid is analyzed in ...
Owing to their small size, advanced position detection possibilities, and accurate theoretical descr...
In physics, there exists a number of paradigm systems – exactly solvable models that can represent a...
In several recent works high-resolution interferometric detection allowed to study the Brownian moti...
In several recent works high-resolution interferometric detection allowed to study the Brownian moti...
In several recent works high-resolution interferometric detection allowed to study the Brownian moti...
We have developed an in situ method to calibrate optical tweezers experiments and simultaneously mea...
Brownian motion of microscopic particles is driven by collisions with surrounding fluid molecules. T...
We experimentally study the fluctuations of Brownian micro-particles trapped with optical tweezers a...
textThe thermal velocity fluctuations of microscopic particles mediate the transition from microscop...
textThe thermal velocity fluctuations of microscopic particles mediate the transition from microscop...
We experimentally study the fluctuations of Brownian micro-particles trapped with optical tweezers a...
Brownian motion of microscopic particles is driven by collisions with surrounding fluid molecules. T...
We experimentally study the fluctuations of Brownian micro-particles trapped with optical tweezers a...
textThis dissertation presents experimental studies on Brownian motion at fast time scales, as well ...
The equilibrium dynamics of a spherical particle immersed in a complex Maxwell fluid is analyzed in ...
Owing to their small size, advanced position detection possibilities, and accurate theoretical descr...
In physics, there exists a number of paradigm systems – exactly solvable models that can represent a...
In several recent works high-resolution interferometric detection allowed to study the Brownian moti...
In several recent works high-resolution interferometric detection allowed to study the Brownian moti...
In several recent works high-resolution interferometric detection allowed to study the Brownian moti...
We have developed an in situ method to calibrate optical tweezers experiments and simultaneously mea...
Brownian motion of microscopic particles is driven by collisions with surrounding fluid molecules. T...
We experimentally study the fluctuations of Brownian micro-particles trapped with optical tweezers a...
textThe thermal velocity fluctuations of microscopic particles mediate the transition from microscop...
textThe thermal velocity fluctuations of microscopic particles mediate the transition from microscop...
We experimentally study the fluctuations of Brownian micro-particles trapped with optical tweezers a...
Brownian motion of microscopic particles is driven by collisions with surrounding fluid molecules. T...
We experimentally study the fluctuations of Brownian micro-particles trapped with optical tweezers a...
textThis dissertation presents experimental studies on Brownian motion at fast time scales, as well ...
The equilibrium dynamics of a spherical particle immersed in a complex Maxwell fluid is analyzed in ...
Owing to their small size, advanced position detection possibilities, and accurate theoretical descr...
In physics, there exists a number of paradigm systems – exactly solvable models that can represent a...