Molecular dynamics study on a nonequilibrium motion of a colloidal particle driven by an external torque
arXiv:1601.04261 · doi:10.1088/1751-8121/aa56a8
Abstract
We investigate the motion of a colloidal particle driven out of equilibrium by an external torque. We use the molecular dynamics simulation that is alternative to the numerical integration approach based on the Langevin equation and is expected to mimic an experiment more realistically. We choose a heat bath composed of thousands of particles interacting to each other through the Lennard-Jones potential and impose the Langevin thermostat to maintain it in equilibrium. We prepare a single colloidal particle to interact with the particles of the heat bath also by the Lennard-Jones potential while any dissipative force and noise are not employed. We prepare the simulation protocol fit to the overdamped limit in real experiments by increasing the size and mass of the colloidal particle. We study the stochastic properties of the nonequilibrium fluctuations for work and heat produced incessantly in time. We accurately confirm the fluctuation theorem for the work production. We show our results to agree accurately with those from the numerical integration of the Langevin equation.
7 pages, 7 figures
References in corpus (16)
- An Extension of the Fluctuation Theorem
- Nonequilibrium fluctuations in a resistor
- Stationary and Transient Work-Fluctuation Theorems for a Dragged Brownian Particle
- Integral fluctuation theorem for the housekeeping heat
- Work fluctuation theorems for harmonic oscillators
- The Brownian gyrator: a minimal heat engine on the nano-scale
- Relevance of initial and final conditions for the Fluctuation Relation in Markov processes
- Fluctuation Relation for Heat
- Fluctuation theorem for the effusion of an ideal gas
- Characterizing Potentials by a Generalized Boltzmann Factor
- Stochastic thermodynamics for delayed Langevin systems
- Efficiency at maximum power and efficiency fluctuations in a linear Brownian heat engine model
- Fluctuations of the total entropy production in stochastic systems
- Heat fluctuations and initial ensembles
- Optimal tuning of a confined Brownian information engine
- Fluctuations of Entropy Production in Partially Masked Electric Circuits: Theoretical Analysis