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S. E. Trullinger

Researcher at University of Southern California

Publications -  5
Citations -  217

S. E. Trullinger is an academic researcher from University of Southern California. The author has contributed to research in topics: Chaotic & Equations of motion. The author has an hindex of 5, co-authored 5 publications receiving 216 citations. Previous affiliations of S. E. Trullinger include University of California, Santa Barbara.

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Coherent Spatial Structure versus Time Chaos in a Perturbed Sine-Gordon System

TL;DR: In this article, a novel interplay of coherent spatial structure and temporal chaos is reported for the ac-driven, damped sine-Gordon system with breather initial conditions and periodic boundary conditions.
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Brownian motion of coupled nonlinear oscillators: Thermalized solitons and nonlinear response to external forces

TL;DR: In this article, the steady-state dynamical behavior of a set of torsion-coupled pendula in the presence of damping, fluctuating thermal torques, and constant applied torque was studied.
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Coherence and chaos in the driven, damped sine-Gordon chain

TL;DR: In this article, preliminary numerical results are presented for solutions of the deterministic sine-Gordon equation under the influence of damping and a sinusoidal uniform driving force, depending on the choice of (inhomogeneous) initial conditions and values of the amplitude and frequency of the driving force.
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Symmetry and chaos in the motion of the damped driven pendulum

TL;DR: In this article, the damped, driven pendulum equation is studied numerically and a relation is pointed out between the symmetry of the initial period-m dynamical state of am×2n period-doubling sequence and the form of the chaotic attractor for the final chaotic dynamic state reached after completion of the inverse doubling sequence.
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Supersymmetric treatment of random disorder in the continuum model of polyacetylene.

TL;DR: A supersymmetric functional-integral formalism based on the method of Bohr and Efetov is employed to study the influence of both "site*' and "bond" disorder on the nature of the ground state of the continuum model of polyaceteylene.