Energetics of rocked inhomogeneous ratchets
arXiv:cond-mat/0106631 · doi:10.1103/PhysRevE.65.037105
Abstract
We study the efficiency of frictional thermal ratchets driven by finite frequency driving force and in contact with a heat bath. The efficiency exhibits varied behavior with driving frequency. Both nonmonotonic and monotonic behavior have been observed. In particular the magnitude of efficiency in finite frequency regime may be more than the efficiency in the adiabatic regime. This is our central result for rocked ratchets. We also show that for the simple potential we have chosen, the presence of only spatial asymmetry (homogeneous system) or only frictional ratchet (symmetric potential profile), the adiabatic efficiency is always more than in the nonadiabatic case.
5 figures
Cited by in corpus (8)
- Giant diffusion and coherent transport in tilted periodic inhomogeneous systems
- Efficiency optimization in a correlation ratchet with asymmetric unbiased fluctuations
- Thermal noise can facilitate energy transformation in the presence of entropic barriers
- Efficiency and Current in a correlated ratchet
- Current Reversals in a inhomogeneous system with asymmetric unbiased fluctuations
- Enhanced thermodynamic efficiency in time asymmetric ratchets
- Giant coherence in driven systems
- Supersymmetry and Fokker-Planck dynamics in periodic potentials