A growth-fragmentation-isolation process on random recursive trees and contact tracing
Author:
Affiliation:
1. CMAP, Ecole Polytechnique, IP Paris
2. Yau Mathematical Sciences Center, Tsinghua University
3. Department of Mathematical Sciences, University of Liverpool
Publisher
Institute of Mathematical Statistics
Subject
Statistics, Probability and Uncertainty,Statistics and Probability
Reference34 articles.
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2. HARRIS, S. C., HORTON, E. and KYPRIANOU, A. E. (2020). Stochastic methods for the neutron transport equation II: Almost sure growth. Ann. Appl. Probab. 30 2815–2845.
3. MEYN, S. P. and TWEEDIE, R. L. (1993). Stability of Markovian processes. III. Foster–Lyapunov criteria for continuous-time processes. Adv. in Appl. Probab. 25 518–548.
4. KESTEN, H. and STIGUM, B. P. (1966). A limit theorem for multidimensional Galton–Watson processes. Ann. Math. Stat. 37 1211–1223.
5. KURTZ, T., LYONS, R., PEMANTLE, R. and PERES, Y. (1997). A conceptual proof of the Kesten–Stigum theorem for multi-type branching processes. In Classical and Modern Branching Processes (Minneapolis, MN, 1994). IMA Vol. Math. Appl. 84 181–185. Springer, New York.
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