When micron-sized particles are trapped in a linear periodic array, for example, by using optical tweezers, they interact only through the hydrodynamic forces between them. This couples the motion of the spheres and it has been predicted that an extended system might behave as an elastic medium that could support underdamped propagating waves. In practice, these underdamped modes can be observed only with massive particles in very stiff traps and very low viscosity fluids. We have been able to realize these conditions by trapping water droplets in air. Even with a system of just two particles we were able to observe the coupled oscillatory motion predicted: underdamping of the symmetric (collective) mode and overdamping of the asymmetric (r...
Colloidal particles are trapped harmonically on the vertices of planar regular polygons, using opti...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
Colloidal particles are trapped harmonically on the vertices of planar regular polygons, using optic...
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
The hydrodynamic interactions of micro-silica spheres trapped in a variety of networks using hologra...
The hydrodynamic interactions of micro-silica spheres trapped in a variety of networks using hologra...
The hydrodynamic interactions of micro-silica spheres trapped in a variety of networks using hologra...
When studying the motion of optically trapped particles on the microsecond time scale, in low-viscos...
When studying the motion of optically trapped particles on the microsecond time scale, in low-viscos...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
Colloidal particles are trapped harmonically on the vertices of planar regular polygons, using opti...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
Colloidal particles are trapped harmonically on the vertices of planar regular polygons, using optic...
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
The hydrodynamic interactions of micro-silica spheres trapped in a variety of networks using hologra...
The hydrodynamic interactions of micro-silica spheres trapped in a variety of networks using hologra...
The hydrodynamic interactions of micro-silica spheres trapped in a variety of networks using hologra...
When studying the motion of optically trapped particles on the microsecond time scale, in low-viscos...
When studying the motion of optically trapped particles on the microsecond time scale, in low-viscos...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
Colloidal particles are trapped harmonically on the vertices of planar regular polygons, using opti...
The Brownian dynamics of an optically trapped water droplet are investigated across the transition f...
Colloidal particles are trapped harmonically on the vertices of planar regular polygons, using optic...