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February 5, 2026Chaos An Interdisciplinary Journal of Nonlinear Science0 citations

Dynamics and chaos control of q -deformed Gaussian map via superior approach

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SSimranVCV. V. M. S. Chandramouli

Key Points

  • The research aims to explore the dynamics of the q-deformed Gaussian map and control its chaotic behavior.
  • Introduced a q-deformation framework to enhance dynamical properties of the Gaussian map.
  • Analyzed nonlinear characteristics using bifurcation patterns and topological entropy.
  • Employed analytical methods and visual tools like Lyapunov exponents and bifurcation diagrams.
  • Implemented a two-step feedback control mechanism to stabilize unstable periodic orbits.
  • The q-deformed map exhibited expanded stability compared to the classical Gaussian map.
  • Effective suppression of chaos was observed through the feedback control mechanism.
  • Numerical simulations validated the stability of chaotic dynamics.

Abstract

This study introduces a deformation framework applied to the classical Gaussian map, yielding a q-deformed Gaussian map with enhanced dynamical properties. The analysis focuses on the nonlinear characteristics, bifurcation patterns, and topological entropy of the deformed system. Through analytical methods and visual tools like Lyapunov exponents and bifurcation diagrams, the q-deformed map demonstrates an expanded stability compared to its classical counterpart. Furthermore, to control chaotic dynamics in both classical and deformed Gaussian maps, a two-step feedback control mechanism is implemented. This approach stabilizes unstable periodic orbits and suppresses chaos effectively, as validated through numerical simulations.

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Cite This Study

Simran et al. (2026) studied this question.

synapsesocial.com/papers/698434ebf1d9ada3c1fb3a32https://doi.org/10.1063/5.0309958
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