Title of article
A local limit theorem for a transient chaotic walk in a frozen environment
Author/Authors
Leskelن، نويسنده , , Lasse and Stenlund، نويسنده , , Mikko، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
21
From page
2818
To page
2838
Abstract
This paper studies particle propagation in a one-dimensional inhomogeneous medium where the laws of motion are generated by chaotic and deterministic local maps. Assuming that the particle’s initial location is random and uniformly distributed, this dynamical system can be reduced to a random walk in a one-dimensional inhomogeneous environment with a forbidden direction. Our main result is a local limit theorem which explains in detail why, in the long run, the random walk’s probability mass function does not converge to a Gaussian density, although the corresponding limiting distribution over a coarser diffusive space scale is Gaussian.
Keywords
Random walk in random environment , Quenched random walk , Random media , Local limit theorem , Extended dynamical system
Journal title
Stochastic Processes and their Applications
Serial Year
2011
Journal title
Stochastic Processes and their Applications
Record number
1578475
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