English

Fractional Brownian Motion: Local Modulus of Continuity with Refined Almost Sure Upper Bound and First Exit Time from One-sided Barrier

Probability 2023-10-20 v2

Abstract

Based on an optimal rate wavelet series representation, we derive a local modulus of continuity result with a refined almost sure upper bound for fractional Brownian motion. \sloppy The obtained upper bound of the small fractional Brownian increments is of order Oa.s.(hHloglogh1)\mathcal O_{a.s.}\big(|h|^H\sqrt{\log\log |h|^{-1}}\big) as h0|h|\to0, and an upper bound of its ppth moment is provided, for any p>0p>0. This result fills the gap of the law of iterated logarithm for fractional Brownian motion, where the moments' information of the random multiplier in the upper bound is missing. With this enhanced upper bound and some new results on the distribution of the maximum of fractional Brownian motion, we obtain a new and refined asymptotic estimate of the upper-tail probability for a fractional Brownian motion to first exit from a positive-valued barrier over time TT, as T+T\to+\infty.

Keywords

Cite

@article{arxiv.2207.10247,
  title  = {Fractional Brownian Motion: Local Modulus of Continuity with Refined Almost Sure Upper Bound and First Exit Time from One-sided Barrier},
  author = {Qidi Peng and Nan Rao},
  journal= {arXiv preprint arXiv:2207.10247},
  year   = {2023}
}

Comments

The paper will be replaced by a new one with improved and quite different looking results