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Published on: May 30, 2014
Effect of state-dependent delay on a weakly damped nonlinear oscillator
Jonathan L Mitchell1, Thomas W Carr
1Department of Mathematics, Hardin-Simmons University, Abilene, Texas 79601, USA. Jonathan.L.Mitchell@hsutx.edu
Abstract:
We consider a weakly damped nonlinear oscillator with state-dependent delay, which has applications in models for lasers, epidemics, and microparasites. More generally, the delay-differential equations considered are a predator-prey system where the delayed term is linear and represents the proliferation of the predator. We determine the critical value of the delay that causes the steady state to become unstable to periodic oscillations via a Hopf bifurcation. Using asymptotic averaging, we determine how the system's behavior is influenced by the functional form of the state-dependent delay. Specifically, we determine whether the branch of periodic solutions will be either sub- or supercritical as well as an accurate estimation of the amplitude. Finally, we choose a few examples of state-dependent delay to test our analytical results by comparing them to numerical continuation.
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