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The food seeking behavior of slime mold: a macroscopic approach
Simone Göttlich1, Stephan Knapp1, Dylan Weber2
1Department of Mathematics, University of Mannheim, Mannheim 68159, Germany.
Abstract:
Starting from a particle model we derive a macroscopic aggregation-diffusion equation for the evolution of slime mold under the assumption of propagation of chaos in the large particle limit. We analyze properties of the macroscopic model in the stationary case and study the behavior of the slime mold between food sources. The efficient numerical simulation of the aggregation-diffusion equation allows for a detailed analysis of the interplay between the different regimes drift, interaction and diffusion.

