Dynamics of an acoustically trapped sphere in beating sound waves

Mohammed A. Abdelaziz, D. Grier
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引用次数: 4

Abstract

A focused acoustic standing wave creates a Hookean potential well for a small sphere and can levitate it stably against gravity. Exposing the trapped sphere to a second transverse traveling sound wave imposes an additional acoustical force that drives the sphere away from its mechanical equilibrium. The driving force is shaped by interference between the standing trapping wave and the traveling driving. If, furthermore, the traveling wave is detuned from the standing wave, the driving force oscillates at the difference frequency. Far from behaving like a textbook driven harmonic oscillator, however, the wave-driven harmonic oscillator instead exhibits a remarkably rich variety of dynamical behaviors arising from the spatial dependence of the driving force. These include oscillations at both harmonics and subharmonics of the driving frequency, period-doubling routes to chaos and Fibonacci cascades. This model system therefore illustrates opportunities for dynamic acoustical manipulation based on spectral control of the sound field, rather than spatial control.
振动声波中声捕获球的动力学
一个聚焦的声波驻波为一个小球体创造了一个虎肯势阱,可以使它稳定地悬浮在重力下。将被困的球体暴露在第二个横向传播声波中,施加额外的声力,使球体远离其机械平衡。动力是由驻阱波和行阱波的干涉形成的。此外,如果行波与驻波失谐,则驱动力以差频振荡。然而,与教科书驱动的谐振子不同,波驱动的谐振子表现出由驱动力的空间依赖性引起的非常丰富的各种动力学行为。这些包括驱动频率的谐波和次谐波的振荡,到混沌的周期加倍路径和斐波那契级联。因此,该模型系统说明了基于声场的频谱控制而不是空间控制的动态声学操纵的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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