Speed of extinction for continuous-state branching processes in a weakly subcritical Lévy environment

Author:

Cardona-Tobón Natalia,Pardo Juan Carlos

Abstract

Abstract We continue with the systematic study of the speed of extinction of continuous-state branching processes in Lévy environments under more general branching mechanisms. Here, we deal with the weakly subcritical regime under the assumption that the branching mechanism is regularly varying. We extend recent results of Li and Xu (2018) and Palau et al. (2016), where it is assumed that the branching mechanism is stable, and complement the recent articles of Bansaye et al. (2021) and Cardona-Tobón and Pardo (2021), where the critical and the strongly and intermediate subcritical cases were treated, respectively. Our methodology combines a path analysis of the branching process together with its Lévy environment, fluctuation theory for Lévy processes, and the asymptotic behaviour of exponential functionals of Lévy processes. Our approach is inspired by the last two previously cited papers, and by Afanasyev et al. (2012), where the analogue was obtained.

Publisher

Cambridge University Press (CUP)

Subject

Statistics, Probability and Uncertainty,General Mathematics,Statistics and Probability

Reference19 articles.

1. Lévy Processes with Negative Drift Conditioned to Stay Positive

2. Asymptotic results for heavy-tailed Lévy processes and their exponential functionals

3. Limit Theorems for Weakly Subcritical Branching Processes in Random Environment

4. Fluctuations of Lévy Processes with Applications

5. [7] Cardona-Tobón, N. and Pardo, J. C. (2021). Speed of extinction for continuous state branching processes in subcritical Lévy environments: The strongly and intermediate regimes. Preprint, arXiv:2112.13674.

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