Quantum state-dependent diffusion and multiplicative noise: A microscopic approach
Quantum state-dependent diffusion and multiplicative noise: A microscopic approach
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Date
2005-07-01
Authors
Barik, Debashis
Ray, Deb Shankar
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Abstract
The state-dependent diffusion, which concerns the Brownian motion of a particle in inhomogeneous media has been described phenomenologically in a number of ways. Based on a system-reservoir nonlinear coupling model we present a microscopic approach to quantum state-dependent diffusion and multiplicative noise in terms of a quantum Markovian Langevin description and an associated Fokker-Planck equation in position space in the overdamped limit. We examine the thermodynamic consistency and explore the possibility of observing a quantum current, a generic quantum effect, as a consequence of this state-dependent diffusion similar to one proposed by Büttiker [Z. Phys. B 68:161 (1987)] in a classical context several years ago. © 2005 Springer Science+Business Media, Inc.
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Keywords
Quantum Langevin equation,
Quantum multiplicative noise,
Quantum ratchet,
Quantum Smoluchowski equation,
State dependent diffusion
Citation
Journal of Statistical Physics. v.120(1-2)