Publication | Open Access
Generalized Energy Equipartition in Harmonic Oscillators Driven by Active Baths
209
Citations
26
References
2014
Year
EngineeringColloidal SystemPhysicsActive MatterApplied PhysicsColloidal PropertyTransport PhenomenaRheologyActive BathsBrownian MotionColloidal BeadsLangevin EquationActive FluidE. Coli BacteriaNonlinear ResonanceBiophysicsNonlinear OscillationHamiltonian System
We study experimentally and numerically the dynamics of colloidal beads confined by a harmonic potential in a bath of swimming E. coli bacteria. The resulting dynamics is well approximated by a Langevin equation for an overdamped oscillator driven by the combination of a white thermal noise and an exponentially correlated active noise. This scenario leads to a simple generalization of the equipartition theorem resulting in the coexistence of two different effective temperatures that govern dynamics along the flat and the curved directions in the potential landscape.
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