Competition at the front of expanding populations

Fuente: arXiv
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Main Authors: Eraso, Sergio, Kardar, Mehran
Format: Preprint
Published: 2026
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author Eraso, Sergio
Kardar, Mehran
author_facet Eraso, Sergio
Kardar, Mehran
contents When competing species grow into new territory, the population is dominated by descendants of successful ancestors at the expansion front. Successful ancestry depends on both the reproductive advantage (fitness), as well as ability and opportunity to colonize new domains. We present a model that integrates both elements by coupling the classic description of one-dimensional competition (Fisher equation) to the minimal model of front shape (KPZ equation). Macroscopic manifestations of these equations are distinct growth morphologies controlled by expansion rates, competitive abilities, or spatial anisotropy. In some cases the ability to expand in space may overcome reproductive advantage in colonizing new territory. When new traits appear with accumulating mutations, we find that variations in fitness in range expansion may be described by the Tracy--Widom distribution.
format Preprint
id arxiv_https___arxiv_org_abs_2604_01187
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Competition at the front of expanding populations
Eraso, Sergio
Kardar, Mehran
Populations and Evolution
Biological Physics
When competing species grow into new territory, the population is dominated by descendants of successful ancestors at the expansion front. Successful ancestry depends on both the reproductive advantage (fitness), as well as ability and opportunity to colonize new domains. We present a model that integrates both elements by coupling the classic description of one-dimensional competition (Fisher equation) to the minimal model of front shape (KPZ equation). Macroscopic manifestations of these equations are distinct growth morphologies controlled by expansion rates, competitive abilities, or spatial anisotropy. In some cases the ability to expand in space may overcome reproductive advantage in colonizing new territory. When new traits appear with accumulating mutations, we find that variations in fitness in range expansion may be described by the Tracy--Widom distribution.
title Competition at the front of expanding populations
topic Populations and Evolution
Biological Physics
url https://arxiv.org/abs/2604.01187