arXiv · math-ph/0607030
Transition to Chaos in Discrete Nonlinear Schrodinger Equation with Long-Range Interaction
Abstract
Discrete nonlinear Schrodinger equation (DNLS) describes a chain of oscillators with nearest neighbor interactions and a specific nonlinear term. We consider its modification with long-range interaction through a potential proportional to $1/l^{1+α}$ with fractional $α< 2$ and $l$ as a distance between oscillators. This model is called $α$DNLS. It exhibits competition between the nonlinearity and a level of correlation between interacting far-distanced oscillators, that is defined by the value of $α$. We consider transition to chaos in this system as a function of $α$ and nonlinearity. It is shown that decreasing of $α$ with respect to nonlinearity stabilize the system. Connection of the model to the fractional genezalization of the NLS (called FNLS) in the long-wave approximation is also discussed and some of the results obtained for $α$DNLS can be correspondingly extended to the FNLS.
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Nickolay Korabel, George M. Zaslavsky. 2006-08-15. Transition to Chaos in Discrete Nonlinear Schrodinger Equation with Long-Range Interaction. https://arxiv.org/abs/math-ph/0607030
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