On the macroscopic equivalence of descriptions of fluctuations for chemical reactions
- 1 July 1977
- journal article
- research article
- Published by AIP Publishing in Journal of Mathematical Physics
- Vol. 18 (7) , 1316-1321
- https://doi.org/10.1063/1.523422
Abstract
Three descriptions of spontaneous fluctuations in macroscopic systems have been proposed: One uses generalized Fokker–Planck equations and treats fluctuations as a stochastic diffusion process; another uses a connection between fluctuations and dissipation and generalizes the Langevin method; the third is the master equation theory which treats fluctuations as arising from a birth and death process. For a variety of systems it is known that the master equation theory is identical to the fluctuation–dissipation theory in the macroscopic limit. For chemical reactions it is shown here that the appropriate diffusion process also becomes identical with the fluctuation–dissipation theory in the macroscopic limit.Keywords
This publication has 20 references indexed in Scilit:
- Generalized Onsager-Machlup function and classes of path integral solutions of the Fokker-Planck equation and the master equationZeitschrift für Physik B Condensed Matter, 1976
- Fluctuations and the Boltzmann equation. IPhysical Review A, 1976
- Cooperative phenomena in systems far from thermal equilibrium and in nonphysical systemsReviews of Modern Physics, 1975
- Fluctuation and relaxation of macrovariablesJournal of Statistical Physics, 1973
- Limit theorems for sequences of jump Markov processes approximating ordinary differential processesJournal of Applied Probability, 1971
- Solutions of ordinary differential equations as limits of pure jump markov processesJournal of Applied Probability, 1970
- Stochastic approach to chemical kineticsJournal of Applied Probability, 1967
- A POWER SERIES EXPANSION OF THE MASTER EQUATIONCanadian Journal of Physics, 1961
- On the Theory of the Brownian Motion IIReviews of Modern Physics, 1945
- Die mittlere Energie rotierender elektrischer Dipole im StrahlungsfeldAnnalen der Physik, 1914