arXiv Analytics

Sign in

arXiv:2004.05927 [math.PR]AbstractReferencesReviewsResources

Vertex-reinforced jump process on the integers with nonlinear reinforcement

Andrea Collevecchio, Tuan-Minh Nguyen, Stanislav Volkov

Published 2020-04-13Version 1

We consider non-linear vertex reinforced jump process (VRJP($w$)) on $\mathbb{Z}$ with an increasing measurable weight function $w:[1,\infty)\to [1,\infty)$ and initial weights equal to one. Our main goal is to study the asymptotic behaviour of VRJP($w$) depending on the integrability of the reciprocal of $w$. In particular, we prove that if $1/w \notin L^1([1,\infty), {\rm Leb})$ then the process is recurrent, i.e. it visits each vertex infinitely often and all local times are unbounded. On the other hand, if $1/w \in L^1([1,\infty), {\rm Leb})$ and there exists a $\rho>0$ such that $t \mapsto w(t)^{\rho}\int_t^{\infty}\frac{du}{w(u)}$ is non-increasing then the process will eventually get stuck on exactly three vertices and there is only one vertex with unbounded local time. We also show that if the initial weights are all the same, VRJP on $\mathbb{Z}$ cannot be transient, i.e. there exists at least one vertex that is visited infinitely often. Our results extend the ones previously obtained by Davis and Volkov [Probab. Theory Relat. Fields (2002)] who showed that VRJP with linear reinforcement on $\mathbb{Z}$ is recurrent.

Related articles: Most relevant | Search more
arXiv:1503.04660 [math.PR] (Published 2015-03-16)
Continuity of Local Time: An applied perspective
arXiv:1901.04039 [math.PR] (Published 2019-01-13)
Change of Variables with Local Time on Surfaces for Jump Processes
arXiv:math/0509422 [math.PR] (Published 2005-09-19, updated 2006-08-03)
Two-parameter $p, q$-variation Paths and Integrations of Local Times