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Statistical Mechanics for Athermal Fluctuation : Non-Gaussian Noise in Physics (1st ed. 2017)

Part of the SPRINGER THESES series
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The author investigates athermal fluctuation from the viewpoints of statistical mechanics in this thesis.

Stochastic methods are theoretically very powerful in describing fluctuation of thermodynamic quantities in small systems on the level of a single trajectory and have been recently developed on the basis of stochastic thermodynamics.

This thesis proposes, for the first time, a systematic framework to describe athermal fluctuation, developing stochastic thermodynamics for non-Gaussian processes, while thermal fluctuations are mainly addressed from the viewpoint of Gaussian stochastic processes in most of the conventional studies. First, the book provides an elementary introduction to the stochastic processes and stochastic thermodynamics.

The author derives a Langevin-like equation with non-Gaussian noise as a minimal stochastic model for athermal systems, and its analytical solution by developing systematic expansions is shown as the main result.

Furthermore, the author shows a thermodynamic framework for such non-Gaussian fluctuations, and studies some thermodynamics phenomena, i.e. heat conduction and energy pumping, which shows distinct characteristics from conventional thermodynamics.

The theory introduced in the book would be a systematic foundation to describe dynamics of athermal fluctuation quantitatively and to analyze their thermodynamic properties on the basis of stochastic methods.

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£89.99
Product Details
Springer Verlag, Singapore
9811063303 / 9789811063305
Hardback
530.13
28/11/2017
Singapore
222 pages, 46 Illustrations, color; 7 Illustrations, black and white; XVI, 222 p. 53 illus., 46 illu
155 x 235 mm