arXiv:0809.4957 [cond-mat.stat-mech]AbstractReferencesReviewsResources
Probability density functions of work and heat near the stochastic resonance of a colloidal particle
Alberto Imparato, Pierre Jop, Artyom Petrosyan, Sergio Ciliberto
Published 2008-09-29Version 1
We study experimentally and theoretically the probability density functions of the injected and dissipated energy in a system of a colloidal particle trapped in a double well potential periodically modulated by an external perturbation. The work done by the external force and the dissipated energy are measured close to the stochastic resonance where the injected power is maximum. We show a good agreement between the probability density functions exactly computed from a Langevin dynamics and the measured ones. The probability density function of the work done on the particle satisfies the fluctuation theorem.
Journal: J. Stat. Mech. (2008) P10017
Categories: cond-mat.stat-mech, cond-mat.soft
Keywords: stochastic resonance, colloidal particle, dissipated energy, fluctuation theorem, external force
Tags: journal article
Related articles: Most relevant | Search more
arXiv:0909.2056 [cond-mat.stat-mech] (Published 2009-09-10)
Fluctuation Theorem in Driven Nonthermal Systems with Quenched Disorder
Molecular transport through a bottleneck driven by external force
arXiv:0907.3269 [cond-mat.stat-mech] (Published 2009-07-19)
The kinetics of escaping of Brownian particles from a potential well for different space dimensionality. The effect of external force