Role of noise in population dynamics cycles
Contribuinte(s) |
UNIVERSIDADE DE SÃO PAULO |
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Data(s) |
18/04/2012
18/04/2012
2009
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Resumo |
Noise is an intrinsic feature of population dynamics and plays a crucial role in oscillations called phase-forgetting quasicycles by converting damped into sustained oscillations. This function of noise becomes evident when considering Langevin equations whose deterministic part yields only damped oscillations. We formulate here a consistent and systematic approach to population dynamics, leading to a Fokker-Planck equation and the associate Langevin equations in accordance with this conceptual framework, founded on stochastic lattice-gas models that describe spatially structured predator-prey systems. Langevin equations in the population densities and predator-prey pair density are derived in two stages. First, a birth-and-death stochastic process in the space of prey and predator numbers and predator-prey pair number is obtained by a contraction method that reduces the degrees of freedom. Second, a van Kampen expansion in the inverse of system size is then performed to get the Fokker-Planck equation. We also study the time correlation function, the asymptotic behavior of which is used to characterize the transition from the cyclic coexistence of species to the ordinary coexistence. |
Identificador |
PHYSICAL REVIEW E, v.79, n.6, 2009 1539-3755 http://producao.usp.br/handle/BDPI/16099 10.1103/PhysRevE.79.061128 |
Idioma(s) |
eng |
Publicador |
AMER PHYSICAL SOC |
Relação |
Physical Review E |
Direitos |
restrictedAccess Copyright AMER PHYSICAL SOC |
Palavras-Chave | #LOTKA-VOLTERRA MODEL #PREY CELLULAR-AUTOMATON #PHASE-TRANSITIONS #PREDATOR #LATTICE #SYSTEM #OSCILLATIONS #FLUCTUATIONS #COEXISTENCE #EXTINCTION #Physics, Fluids & Plasmas #Physics, Mathematical |
Tipo |
article original article publishedVersion |