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Nonlinear Theory of Quantum Brownian Motion

机译:量子布朗运动的非线性理论

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摘要

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
机译:基于热力学增强的非线性薛定ding方程,建立了经典环境中量子布朗运动的非线性理论。后者通过马德隆(Madelung)变换转换为非线性的类似于Smoluchowski的量子方程,事实证明该方程可重现量子和经典物理学中的关键结果。该理论在自由量子布朗粒子上的应用导致位置弥散对时间的非线性依赖性,这是布朗运动爱因斯坦定律的量子推广。结果表明,从量子到经典扩散的退相干时间与热德布罗意波长的平方除以经典爱因斯坦扩散常数成正比。关键词量子布朗运动-量子非线性-爱因斯坦定律-退相干

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