An optically trapped Brownian particle is a sensitive probe of molecular and nanoscopic forces. An understanding of its motion, which is caused by the interplay of random and deterministic contributions, can lead to greater physical insight into the behavior of stochastic phenomena. The modeling of realistic stochastic processes typically requires advanced mathematical tools. We discuss a finite difference algorithm to compute the motion of an optically trapped particle and the numerical treatment of the white noise term. We then treat the transition from the ballistic to the diffusive regime due to the presence of inertial effects on short time scales and examine the effect of an optical trap on the motion of the particle. We also outline ...
Optical trapping using plasmonic nanoapertures has proven to be an effective means for the contactle...
textThis dissertation details our experiments and numerical calculations on short timescale Brownian...
We consider a model of a particle trapped in a harmonic optical trap but with the addition of a nonc...
Some randomness is present in most phenomena, ranging from biomolecules and nanodevices to financial...
Cataloged from PDF version of article.Unlike passive Brownian particles, active Brownian particles, ...
Optical forces can affect the motion of a Brownian particle. For example, optical tweezers use optic...
Some randomness is present in most phenomena, ranging from biomolecules and nanodevices to financial...
Optical forces can affect the motion of a Brownian particle. For example, optical tweezers use optic...
Collisions of a particle pair induced by optical tweezers have been employed to study colloidal stab...
textThis dissertation details our experiments on studying the Brownian motion of an optically trappe...
textThis dissertation details our experiments on studying the Brownian motion of an optically trappe...
This thesis explores the properties of different stochastic processes within an optical trapping set...
At fast timescales, the self-similarity of random Brownian motion is expected to break down and be r...
Particles trapped in a laser experience a linear restoring force that keeps them centered in the tra...
We have developed an in situ method to calibrate optical tweezers experiments and simultaneously mea...
Optical trapping using plasmonic nanoapertures has proven to be an effective means for the contactle...
textThis dissertation details our experiments and numerical calculations on short timescale Brownian...
We consider a model of a particle trapped in a harmonic optical trap but with the addition of a nonc...
Some randomness is present in most phenomena, ranging from biomolecules and nanodevices to financial...
Cataloged from PDF version of article.Unlike passive Brownian particles, active Brownian particles, ...
Optical forces can affect the motion of a Brownian particle. For example, optical tweezers use optic...
Some randomness is present in most phenomena, ranging from biomolecules and nanodevices to financial...
Optical forces can affect the motion of a Brownian particle. For example, optical tweezers use optic...
Collisions of a particle pair induced by optical tweezers have been employed to study colloidal stab...
textThis dissertation details our experiments on studying the Brownian motion of an optically trappe...
textThis dissertation details our experiments on studying the Brownian motion of an optically trappe...
This thesis explores the properties of different stochastic processes within an optical trapping set...
At fast timescales, the self-similarity of random Brownian motion is expected to break down and be r...
Particles trapped in a laser experience a linear restoring force that keeps them centered in the tra...
We have developed an in situ method to calibrate optical tweezers experiments and simultaneously mea...
Optical trapping using plasmonic nanoapertures has proven to be an effective means for the contactle...
textThis dissertation details our experiments and numerical calculations on short timescale Brownian...
We consider a model of a particle trapped in a harmonic optical trap but with the addition of a nonc...