English

Cross-Diffusion Theory for Overcrowding Dispersal in Interacting Species System

Analysis of PDEs 2024-05-27 v2 Optimization and Control

Abstract

This work introduces a new class of cross-diffusion systems for studying overcrowding dispersal of two species. The approach, based on proximal minimization energy through a minimum flow process, offers a potential generalization of existing segregation models. Unlike prior methods using PDEs or W2W_2-Wasserstein flows, it establishes a well-posed PDE framework for capturing the interplay between diffusion and concentration gradients. This framework has the potential to significantly improve our understanding of how cross-diffusion shapes spatial patterns, coexistence, and overall distribution of multiple species. Notably, for homogeneous cases, the approach definitely leads to a well-defined PDE grounded in a new general H1H^{-1}-theory specifically developed for overcrowding dispersal. This theory provides a robust foundation for further analysis.

Keywords

Cite

@article{arxiv.2403.06464,
  title  = {Cross-Diffusion Theory for Overcrowding Dispersal in Interacting Species System},
  author = {Noureddine Igbida},
  journal= {arXiv preprint arXiv:2403.06464},
  year   = {2024}
}
R2 v1 2026-06-28T15:15:22.633Z