Plant Dynamics, Birth-Jump Processes, and Sharp Traveling Waves

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Abstract

Motivated by the importance of understanding the dynamics of the growth and dispersal of plants in various environments, we introduce and analyze a discrete agent-based model based on a birth-jump process, which exhibit wave-like solutions. To rigorously analyze these traveling wave phenomena, we derive the diffusion limit of the discrete model and prove the existence of traveling wave solutions (sharp and continuously differentiable) assuming a logarithmic-type growth. Furthermore, we provide a variational speed for the minimum speed of the waves and perform numerical experiments that confirm our results.

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Rodríguez, N., & Malanson, G. (2018). Plant Dynamics, Birth-Jump Processes, and Sharp Traveling Waves. Bulletin of Mathematical Biology, 80(6), 1655–1687. https://doi.org/10.1007/s11538-018-0431-5

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