The Brownian dynamics of an optically trapped water droplet are investigated across the transition from over- to underdamped oscillations. The spectrum of position fluctuations evolves from a Lorentzian shape typical of overdamped systems (beads in liquid solvents) to a damped harmonic oscillator spectrum showing a resonance peak. In this later underdamped regime, we excite parametric resonance by periodically modulating the trapping power at twice the resonant frequency. The power spectra of position fluctuations are in excellent agreement with the obtained analytical solutions of a parametrically modulated Langevin equation.</p
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
When subject to external acoustic excitation, a droplet exhibits behaviour depending crucially on it...
When subject to external acoustic excitation, a droplet exhibits behaviour depending crucially on it...
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...
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...
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...
We demonstrate a novel technique for direct measurement of the oscillation frequency in an optical-t...
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...
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
When subject to external acoustic excitation, a droplet exhibits behaviour depending crucially on it...
When subject to external acoustic excitation, a droplet exhibits behaviour depending crucially on it...
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...
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...
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...
We demonstrate a novel technique for direct measurement of the oscillation frequency in an optical-t...
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...
When micron-sized particles are trapped in a linear periodic array, for example, by using optical tw...
When subject to external acoustic excitation, a droplet exhibits behaviour depending crucially on it...
When subject to external acoustic excitation, a droplet exhibits behaviour depending crucially on it...