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Chaos and beyond in a water filled ultrasonic resonance system

机译:混沌及以外的水填充超声谐振系统

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摘要

Finite amplitude ultrasonic wave resonances in a one-dimensional liquid-filled cavity, formed by a narrow band transducer and a plane reflector, are reported. The resonances are observed to include not only the expected harmonic and subharmonic signals (1,2) but chaotic signals as well. The generation mechanism requires attaining a threshold value of the driving amplitude that the liquid-filled cavity system becomes sufficiently nonlinear in response. The nonlinear features of the system were recently investigated via the construction of an ultrasonic interferometer having optical precision. The transducers were compressional, undamped quartz and lithium niobate crystals having the frequency range 1-10 MHz, driven by a high power amplifier. Both an optical diffraction system to characterize the diffraction pattern of laser light normally incident to the cavity and a receiving transducer attached to an aligned reflector with lapped flat and parallel surfaces were used to assess the generated resonance response in the cavity. At least 5 regions of excitation are identified.
机译:报道了由窄带换能器形成的一维液体填充腔中的有限幅度超声波谐振,由窄带换能器和平面反射器形成。观察到共振不仅包括预期的谐波和次谐信号(1,2),而且还包括混沌信号。生成机制需要达到液体填充腔系统变得充分非线性的驱动幅度的阈值。最近通过具有光学精度的超声波干涉仪的构造来研究系统的非线性特征。换能器是压缩,未透明的石英和锂铌酸锂晶体,其频率范围为1-10MHz,由高功率放大器驱动。用于表征通常入射到腔的激光的衍射图案的光衍射系统和用夹住的平坦和平行表面附接到对准的反射器的接收换能器来评估腔内产生的共振响应。确定至少5个激发区域。

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