Diffusive Behavior for Randomly Kicked Newtonian Particles in a Spatially Periodic Medium

被引:0
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作者
Jeremy Clark
Christian Maes
机构
[1] University of Helsinki,Department of Mathematics
[2] K.U. Leuven,Instituut voor Theoretische Fysica
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Brownian Motion; Random Walk; Diffusive Behavior; Linear Boltzmann Equation; Momentum Process;
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摘要
We prove a central limit theorem for the momentum distribution of a particle undergoing an unbiased spatially periodic random forcing at exponentially distributed times without friction. The start is a linear Boltzmann equation for the phase space density, where the average energy of the particle grows linearly in time. Rescaling time, the momentum converges to a Brownian motion, and the position is its time-integral showing superdiffusive scaling with time t3/2. The analysis has two parts: (1) to show that the particle spends most of its time at high energy, where the spatial environment is practically invisible; (2) to treat the low energy incursions where the motion is dominated by the deterministic force, with potential drift but where symmetry arguments cancel the ballistic behavior.
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页码:229 / 283
页数:54
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