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Implicit renewal theory for exponential functionals of L\'evy processes

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arxiv 1510.01809 v2 pith:EBX7FELP submitted 2015-10-07 math.PR

classification math.PR
keywords exponentialbehaviourdistributionexplainfactorisationfunctionalfunctionalsresults
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We establish a new integral equation for the probability density of the exponential functional of a L\'evy process and provide a three-term (Wiener-Hopf type) factorisation of its law. We explain how these results complement the techniques used in the study of exponential functionals and, in some cases, provide quick proofs of known results and derive new ones. We explain how the factors appearing in the three-term factorisation determine the local and asymptotic behaviour of the law of the exponential functional. We describe the behaviour of the tail distribution at infinity and of the distribution at zero under some mild assumptions.

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  1. Intrinsic area near the origin for self-similar growth-fragmentations and related random surfaces

    math.PR 2019-08 accept novelty 6.0 of 10

    For self-similar growth-fragmentations, the intrinsic area of small root-centered balls has a deterministic almost-sure rate with positive initial size and logarithmic fluctuations when the initial size is zero.

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