arXiv · cond-mat/9809288
Perturbations of Noise: The origins of Isothermal Flows
Abstract
We make a detailed analysis of both phenomenological and analytic background for the "Brownian recoil principle" hypothesis (Phys. Rev. A 46, (1992), 4634). A corresponding theory of the isothermal Brownian motion of particle ensembles (Smoluchowski diffusion process approximation), gives account of the environmental recoil effects due to locally induced tiny heat flows. By means of local expectation values we elevate the individually negligible phenomena to a non-negligible (accumulated) recoil effect on the ensemble average. The main technical input is a consequent exploitation of the Hamilton-Jacobi equation as a natural substitute for the local momentum conservation law. Together with the continuity equation (alternatively, Fokker-Planck), it forms a closed system of partial differential equations which uniquely determines an associated Markovian diffusion process. The third Newton law in the mean is utilised to generate diffusion-type processes which are either anomalous (enhanced), or generically non-dispersive.
Explore related subjects
Keep this discovery
Piotr Garbaczewski. 1998-09-22. Perturbations of Noise: The origins of Isothermal Flows. https://doi.org/10.1103/physreve.59.1498
Cite the original work for its findings. Save a collection to share your selection of sources.