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Nonlinear Theory of Quantum Brownian Motion
Authors:Roumen Tsekov
Affiliation:(1) DWI, RWTH, 52056 Aachen, Germany
Abstract:A nonlinear theory of quantum Brownian motion in classical environment is developed based on a thermodynamically enhanced nonlinear Schrödinger equation. The latter is transformed via the Madelung transformation into a nonlinear quantum Smoluchowski-like equation, which is proven to reproduce key results from the quantum and classical physics. The application of the theory to a free quantum Brownian particle results in a nonlinear dependence of the position dispersion on time, being quantum generalization of the Einstein law of Brownian motion. It is shown that the time of decoherence from quantum to classical diffusion is proportional to the square of the thermal de Broglie wavelength divided by the classical Einstein diffusion constant.
Keywords:Quantum Brownian motion  Quantum nonlinearity  Einstein law  Decoherence
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