Using simulations that realistically model both hydrodynamic and elastic behavior, we study the motion of a microscopic, driven elastic sphere immersed in water. We first confirm the “jittery” relaxation recently predicted theoretically for an externally driven elastic sphere. The sphere is then divided in two and each section is driven internally with the two sections 180° out of phase. With periodic and perfectly symmetric driving, the elastic sphere spontaneously breaks symmetry and can attain macroscopic average swimming velocities to the right or left, the direction depending only on the initial state. With asymmetric driving the elastic sphere swims in one direction and the maximum speed is obtained with a 1/3:2/3 split. At high drive...
Simulations help us test various restrictions/assumptions placed on physical systems that would othe...
We study the propulsion of two model swimmers at low Reynolds number. Inspired by Purcell's model, w...
The role of passive body dynamics on the kinematics of swimming micro-organisms in complex fluids is...
We describe experiments and simulations demonstrating the propulsion of a neutrally buoyant swimmer ...
We describe experiments and simulations demonstrating the propulsion of a neutrally-buoyant swimmer ...
Magnetic actuation of elasto-magnetic devices has long been proposed as a simple way to propel fluid...
Many small organisms self-propel in viscous fluids using travelling wave-like deformations of their ...
The self-propulsion of artificial and biological microswimmers (or active colloidal particles) has o...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Conventionally, a microscopic particle that performs a reciprocal stroke cannot move through its env...
In this dissertation, the effects of elasticity on hydrodynamic interactions at small scales are inv...
We present here a comprehensive derivation for the speed of a small bottom-heavy sphere forced by a ...
In this thesis, we explore different topics in the broad field of microscale swimming, focussing on ...
Many cells exploit the bending or rotation of flagellar filaments in order to self-propel in viscous...
Motivated by the incredible agility of fish and aquatic mammals underwater, scientists and engineers...
Simulations help us test various restrictions/assumptions placed on physical systems that would othe...
We study the propulsion of two model swimmers at low Reynolds number. Inspired by Purcell's model, w...
The role of passive body dynamics on the kinematics of swimming micro-organisms in complex fluids is...
We describe experiments and simulations demonstrating the propulsion of a neutrally buoyant swimmer ...
We describe experiments and simulations demonstrating the propulsion of a neutrally-buoyant swimmer ...
Magnetic actuation of elasto-magnetic devices has long been proposed as a simple way to propel fluid...
Many small organisms self-propel in viscous fluids using travelling wave-like deformations of their ...
The self-propulsion of artificial and biological microswimmers (or active colloidal particles) has o...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Conventionally, a microscopic particle that performs a reciprocal stroke cannot move through its env...
In this dissertation, the effects of elasticity on hydrodynamic interactions at small scales are inv...
We present here a comprehensive derivation for the speed of a small bottom-heavy sphere forced by a ...
In this thesis, we explore different topics in the broad field of microscale swimming, focussing on ...
Many cells exploit the bending or rotation of flagellar filaments in order to self-propel in viscous...
Motivated by the incredible agility of fish and aquatic mammals underwater, scientists and engineers...
Simulations help us test various restrictions/assumptions placed on physical systems that would othe...
We study the propulsion of two model swimmers at low Reynolds number. Inspired by Purcell's model, w...
The role of passive body dynamics on the kinematics of swimming micro-organisms in complex fluids is...