Asymptotic properties of Brownian motion delayed by inverse subordinators
Probability
2013-11-26 v1
Abstract
We study the asymptotic behaviour of the time-changed stochastic process , where is a standard one-dimensional Brownian motion and is the (generalized) inverse of a subordinator, i.e. the first-passage time process corresponding to an increasing L\'evy process with Laplace exponent . This type of processes plays an important role in statistical physics in the modeling of anomalous subdiffusive dynamics. The main result of the paper is the proof of the mixing property for the sequence of stationary increments of a subdiffusion process. We also investigate various martingale properties, derive a generalized Feynman-Kac formula, the laws of large numbers and of the iterated logarithm for .
Keywords
Cite
@article{arxiv.1311.6043,
title = {Asymptotic properties of Brownian motion delayed by inverse subordinators},
author = {Marcin Magdziarz and Rene L. Schilling},
journal= {arXiv preprint arXiv:1311.6043},
year = {2013}
}