arXiv · 1603.06431
A fitness-driven cross-diffusion system from polulation dynamics as a gradient flow
Abstract
We consider a fitness-driven model of dispersal of $N$ interacting populations, which was previously studied merely in the case $N=1$. Based on some optimal transport distance recently introduced, we identify the model as a gradient flow in the metric space of Radon measures. We prove existence of global non-negative weak solutions to the corresponding system of parabolic PDEs, which involves degenerate cross-diffusion. Under some additional hypotheses and using a new multicomponent Poincaré-Beckner functional inequality, we show that the solutions converge exponentially to an ideal free distribution in the long time regime.
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Stanislav Kondratyev, Léonard Monsaingeon, Dmitry Vorotnikov. 2016-03-21. A fitness-driven cross-diffusion system from polulation dynamics as a gradient flow. https://arxiv.org/abs/1603.06431
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