English

Extremal theory for long range dependent infinitely divisible processes

Probability 2018-05-23 v2

Abstract

We prove limit theorems of an entirely new type for certain long memory regularly varying stationary infinitely divisible random processes. These theorems involve multiple phase transitions governed by how long the memory is. Apart from one regime, our results exhibit limits that are not among the classical extreme value distributions. Restricted to the one-dimensional case, the distributions we obtain interpolate, in the appropriate parameter range, the α\alpha-Fr\'echet distribution and the skewed α\alpha-stable distribution. In general, the limit is a new family of stationary and self-similar random sup-measures with parameters α(0,)\alpha\in(0,\infty) and β(0,1)\beta\in(0,1), with representations based on intersections of independent β\beta-stable regenerative sets. The tail of the limit random sup-measure on each interval with finite positive length is regularly varying with index α-\alpha. The intriguing structure of these random sup-measures is due to intersections of independent β\beta-stable regenerative sets and the fact that the number of such sets intersecting simultaneously increases to infinity as β\beta increases to one. The results in this paper extend substantially previous investigations where only α(0,2)\alpha\in(0,2) and β(0,1/2)\beta\in(0,1/2) have been considered.

Keywords

Cite

@article{arxiv.1703.07496,
  title  = {Extremal theory for long range dependent infinitely divisible processes},
  author = {Gennady Samorodnitsky and Yizao Wang},
  journal= {arXiv preprint arXiv:1703.07496},
  year   = {2018}
}

Comments

29 pages. A major revision that in particular corrected mistakes in the previous version

R2 v1 2026-06-22T18:53:20.665Z