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arxiv: 1402.2416 · v1 · pith:F5SBA7P6new · submitted 2014-02-11 · ❄️ cond-mat.soft · physics.flu-dyn

Resonant and antiresonant bouncing droplets

classification ❄️ cond-mat.soft physics.flu-dyn
keywords bouncingdropletantiresonanceforcingfrequenciesmechanismadoptamplitude
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When placed onto a vibrating liquid bath, a droplet may adopt a permanent bouncing behavior, depending on both the forcing frequency and the forcing amplitude. The relationship between the droplet deformations and the bouncing mechanism is studied experimentally and theoretically through an asymmetric and dissipative bouncing spring model. Antiresonance effects are evidenced. Experiments and theoretical predictions show that both resonance at specific frequencies and antiresonance at Rayleigh frequencies play crucial roles in the bouncing mechanism. In particular, we show that they can be exploited for droplet size selection.

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