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Published on: February 8, 2019
Resonant activation of population extinctions
Christopher Spalding1, Charles R Doering2, Glenn R Flierl3
1Divison of Geological and Planetary Sciences, California Institute of Technology, Pasadena, California 91125, USA.
Environmental noise can surprisingly slow down population extinctions. This study reveals a specific fluctuation rate that minimizes extinction time, a phenomenon called resonant activation, balancing rare event severity with interval.
Area of Science:
- Ecology and evolutionary biology
- Population dynamics modeling
Background:
- Population extinction is a critical issue in ecology and evolution.
- Stochastic factors significantly influence extinction, but interactions between demographic stochasticity and environmental noise are unclear.
Purpose of the Study:
- To investigate the impact of environmental noise on population extinction dynamics.
- To understand the interplay between demographic stochasticity and fluctuating environmental conditions.
Main Methods:
- Modeled environmental forcing as a two-state stochastic fluctuation with differing death rates.
- Analyzed the mean time to extinction under various fluctuation rates.
- Developed a heuristic description and criterion for resonant activation.
Main Results:
- Identified a specific rate of environmental fluctuations that minimizes the mean time to extinction.
- This phenomenon, termed resonant activation, occurs when the severity of rare events is balanced by their frequency.
- Established a criterion for the existence of resonant activation.
Conclusions:
- Environmental noise can exhibit complex effects on population persistence, including potentially slowing extinction.
- The findings offer insights into population viability under fluctuating environments and have implications for evolutionary models.
- The concept of resonant activation provides a framework for understanding extinction dynamics influenced by environmental stochasticity.
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