Determination of the Correlation Factor Between the Brownian Particle and Its Environment

Authors

  • Reza Alemi Independent researcher, Damghan, Iran Author

DOI:

https://doi.org/10.14331/ijfps.2014.330074

Keywords:

correlation factor, dissipative, discontinuity, time delay

Abstract

The purpose of this brief extension is reporting the exact results, by introduction a correlation factor, for the dissipative system which consisting of a particle in one-dimension coupled to a sum of an infinite number of harmonic oscillators.

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References

Caldeira, A., & Leggett, A. (1981). Influence of dissipation on quantum tunneling in macroscopic systems. Physical review letters, 46(4), 211.

Caldeira, A. O., & Leggett, A. J. (1983). Path integral approach to quantum Brownian motion. Physica A: Statistical mechanics and its Applications,121(3), 587-616.

Caldirola, P. (1941). Forze non conservative nella meccanica quantistica. Il Nuovo Cimento, 18(9), 393-400.

Da Costa, M. R., Caldeira, A., Dutra, S., & Westfahl Jr, H. (2000). Exact diagonalization of two quantum models for the damped harmonic oscillator. Physical Review A, 61(2), 022107.

Feynman, R. P., & Vernon Jr, F. (1963). The theory of a general quantum system interacting with a linear dissipative system. Annals of physics, 24, 118-173.

Kubo, R. (1966). The fluctuation-dissipation theorem. Reports on Progress in Physics, 29(1), 255.

Ulrich Weiss. (2012). Quantum Dissipative Systems (t. Edition Ed.).

Published

2014-12-31

Issue

Section

Articles

How to Cite

Determination of the Correlation Factor Between the Brownian Particle and Its Environment (Reza Alemi, Trans.). (2014). International Journal of Fundamental Physical Sciences, 4(4), 111-113. https://doi.org/10.14331/ijfps.2014.330074

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