Abstract
The Fleming-Viot particle system consists of N identical particles diffusing in an open domain . Whenever a particle hits the boundary , that particle jumps onto another particle in the interior. It is known that this system provides a particle representation for both the Quasi-Stationary Distribution (QSD) and the distribution conditioned on survival for a given diffusion killed at the boundary of its domain. We extend these results to the case of McKean-Vlasov dynamics. We prove that the law conditioned on survival of a given McKean-Vlasov process killed on the boundary of its domain may be obtained from the hydrodynamic limit of the corresponding Fleming-Viot particle system. We then show that if the target killed McKean-Vlasov process converges to a QSD as , such a QSD may be obtained from the stationary distributions of the corresponding N-particle Fleming-Viot system as .
Funding Statement
This work was partially funded by grant DMS-1351653 from the U.S. National Science Foundation.
Citation
Oliver Tough. James Nolen. "The Fleming-Viot process with McKean-Vlasov dynamics." Electron. J. Probab. 27 1 - 72, 2022. https://doi.org/10.1214/22-EJP820
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