Localized Faraday patterns under heterogeneous parametric excitation

Urra, Hector; Marin, Juan F.; Paez-Silva, Milena; Taki, Majid; Coulibaly, Saliya; Gordillo, Leonardo; Garcia-Nustes, Monica A.

Abstract

Faraday waves are a classic example of a system in which an extended pattern emerges under spatially uniform forcing. Motivated by systems in which uniform excitation is not plausible, we study both experimentally and theoretically the effect of heterogeneous forcing on Faraday waves. Our experiments show that vibrations restricted to finite regions lead to the formation of localized subharmonic wave patterns and change the onset of the instability. The prototype model used for the theoretical calculations is the parametrically driven and damped nonlinear Schrodinger equation, which is known to describe well Faraday-instability regimes. For an energy injection with a Gaussian spatial profile, we show that the evolution of the envelope of the wave pattern can be reduced to a Weber-equation eigenvalue problem. Our theoretical results provide very good predictions of our experimental observations provided that the decay length scale of the Gaussian profile is much larger than the pattern wavelength.

Más información

Título según WOS: Localized Faraday patterns under heterogeneous parametric excitation
Título según SCOPUS: Localized Faraday patterns under heterogeneous parametric excitation
Título de la Revista: PHYSICAL REVIEW E
Volumen: 99
Número: 3
Editorial: AMER PHYSICAL SOC
Fecha de publicación: 2019
Idioma: English
DOI:

10.1103/PhysRevE.99.033115

Notas: ISI, SCOPUS