نتایج جستجو برای: nonlinear oscillators

تعداد نتایج: 229162  

2011
Vladimir S. Aslanov

Motion of a biharmonic system under action of small periodic force and small damped force is studied. The biharmonic oscillator is a physical system acting under a biharmonic force like: θ θ 2 sin sin b a + . The article contains biharmonic oscillator analysis, phase space research, and analytic solutions for separatrixes. The biharmonic oscillator performs chaotic motion near separatrixes unde...

Journal: :Physical review. E, Statistical, nonlinear, and soft matter physics 2007
Janez Jamsek Aneta Stefanovska Peter V E McClintock

Bispectral analysis, recently introduced as a technique for revealing time-phase relationships, is extended to make use of wavelets rather than Fourier analysis. It is thus able to encompass instantaneous phase-time dependence for the case of two or more coupled nonlinear oscillators. The method is demonstrated and evaluated by use of test signals from a pair of coupled Poincaré oscillators. It...

2015
Eyal Kenig

Frequency and time references play an essential role in modern technology and in living systems. The precision of self-sustained oscillations is limited by the effects of noise, which becomes evermore important as the sizes of the devices become smaller. In this paper, we review our recent theoretical results on using nonlinear dynamics and pattern formation to reduce the effects of noise and i...

Journal: :Physical review. E, Statistical, nonlinear, and soft matter physics 2014
Lennart Schmidt Katharina Krischer

We study two-cluster solutions of an ensemble of generic limit-cycle oscillators in the vicinity of a Hopf bifurcation, i.e., Stuart-Landau oscillators, with a nonlinear global coupling. This coupling leads to conserved mean-field oscillations acting back on the individual oscillators as a forcing. A reduction to two effective equations makes a linear stability analysis of the cluster solutions...

Journal: :Physical review. E, Statistical, nonlinear, and soft matter physics 2015
Maxim Komarov Arkady Pikovsky

We report on finite-sized-induced transitions to synchrony in a population of phase oscillators coupled via a nonlinear mean field, which microscopically is equivalent to a hypernetwork organization of interactions. Using a self-consistent approach and direct numerical simulations, we argue that a transition to synchrony occurs only for finite-size ensembles and disappears in the thermodynamic ...

2015
Nicolas Locatelli Abbass Hamadeh Flavio Abreu Araujo Anatoly D. Belanovsky Petr N. Skirdkov Romain Lebrun Vladimir V. Naletov Konstantin A. Zvezdin Manuel Muñoz Julie Grollier Olivier Klein Vincent Cros Grégoire de Loubens

Due to their nonlinear properties, spin transfer nano-oscillators can easily adapt their frequency to external stimuli. This makes them interesting model systems to study the effects of synchronization and brings some opportunities to improve their microwave characteristics in view of their applications in information and communication technologies and/or to design innovative computing architec...

2013
M Mulansky

We study the scaling properties of energy spreading in disordered strongly nonlinear Hamiltonian lattices. Such lattices consist of nonlinearly coupled local linear or nonlinear oscillators, and demonstrate a rather slow, subdiffusive spreading of initially localized wave packets. We use a fractional nonlinear diffusion equation as a heuristic model of this process, and confirm that the scaling...

2015
Dan Wilson Abbey B. Holt Theoden I. Netoff Jeff Moehlis

We develop a methodology to design a stimulus optimized to entrain nonlinear, noisy limit cycle oscillators with uncertain properties. Conditions are derived which guarantee that the stimulus will entrain the oscillators despite these uncertainties. Using these conditions, we develop an energy optimal control strategy to design an efficient entraining stimulus and apply it to numerical models o...

2003
ARKADY S. PIKOVSKY MICHAEL G. ROSENBLUM

In this review article we discuss e ects of phase synchronization of nonlinear self-sustained oscillators. Starting with a classical theory of phase locking, we extend the notion of phase to autonoumous continuous-time chaotic systems. Using as examples the well-known Lorenz and Rossler oscillators, we describe the phase synchronization of chaotic oscillators by periodic external force. Both s...

2007
Shaoping Xiao Wenyi Hou

We propose a multiscale method to study nanotube-based resonant oscillators. In the multiscale model, nanotubes are modeled via molecular dynamics, while the metal paddle is modeled as a rigid body. The molecular and continuum models are attached to each other through the interfaces on which carbon atoms are located. We employ the concepts of “virtual” atoms and bonds to effectively couple the ...

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