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Anomalous First Passage in Evolution: Edge-KPZ Theory

Published 15 Sep 2026 in q-bio.PE, cond-mat.stat-mech, and physics.bio-ph | (2609.16499v1)

Abstract: The pace of evolution depends on how rapidly new phenotypes arise. We show that neutral Wright-Fisher evolution exhibits anomalous first passage despite diffusive mutations. The mean time for the first individual to reach a prescribed phenotypic distance scales approximately as (σ<sup>2)<sup>3/2(σ<sup>2)<sup>{-3/2} with mutation variance σ<sup>2σ<sup>2. Two crossovers bound this regime, with inverse-variance scaling on either side. Combining coalescent theory with Kardar-Parisi-Zhang (KPZ) fluctuations at the dilute population edge, we develop an edge-KPZ theory of all three regimes. The anomaly persists under weak selection.

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