
In the interest of conservation, the importance of having a large habitat available for a species is widely known. Here, we introduce a lattice-based model for a population and look at the importance of fluctuations as well as that of the population density, particularly with respect to Allee effects. We examine the model analytically and by Monte Carlo simulations and find that, while the size of the habitat is important, there exists a critical population density below which extinction is assured. This has large consequences with respect to conservation, especially in the design of habitats and for populations whose density has become small. In particular, we find that the probability of survival for small populations can be increased by a reduction in the size of the habitat and show that there exists an optimal size reduction.
7 pages and 8 figures
Population Density, Population Dynamics, Populations and Evolution (q-bio.PE), Monte Carlo methods, Extinction, Critical population density, Habitat size, Extinction, Biological, Models, Biological, Monte Carlo simulations, Population dynamics (general), Mean field, FOS: Biological sciences, Fluctuations, Humans, Genetics and epigenetics, Quantitative Biology - Populations and Evolution, Monte Carlo Method, Algorithms, Ecosystem
Population Density, Population Dynamics, Populations and Evolution (q-bio.PE), Monte Carlo methods, Extinction, Critical population density, Habitat size, Extinction, Biological, Models, Biological, Monte Carlo simulations, Population dynamics (general), Mean field, FOS: Biological sciences, Fluctuations, Humans, Genetics and epigenetics, Quantitative Biology - Populations and Evolution, Monte Carlo Method, Algorithms, Ecosystem
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