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Generation and control of sound bullets with a nonlinear acoustic lens

机译:用非线性声透镜产生和控制声弹

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摘要

Acoustic lenses are employed in a variety of applications, from biomedical imaging and surgery to defense systems and damage detection in materials. Focused acoustic signals, for example, enable ultrasonic transducers to image the interior of the human body. Currently however the performance of acoustic devices is limited by their linear operational envelope, which implies relatively inaccurate focusing and low focal power. Here we show a dramatic focusing effect and the generation of compact acoustic pulses (sound bullets) in solid and fluid media, with energies orders of magnitude greater than previously achievable. This focusing is made possible by a tunable, nonlinear acoustic lens, which consists of ordered arrays of granular chains. The amplitude, size, and location of the sound bullets can be controlled by varying the static precompression of the chains. Theory and numerical simulations demonstrate the focusing effect, and photoelasticity experiments corroborate it. Our nonlinear lens permits a qualitatively new way of generating high-energy acoustic pulses, which may improve imaging capabilities through increased accuracy and signal-to-noise ratios and may lead to more effective nonintrusive scalpels, for example, for cancer treatment.
机译:从生物医学成像和外科手术到防御系统和材料中的损伤检测,声学透镜可用于多种应用。例如,聚焦的声信号使超声换能器能够对人体内部成像。然而,当前,声学设备的性能受到其线性工作范围的限制,这意味着相对不准确的聚焦和低聚焦功率。在这里,我们展示了一种引人注目的聚焦效果,并在固体和流体介质中产生了紧凑的声脉冲(发声的子弹),其能量比以前可达到的数量级大。通过可调的非线性声透镜可以实现这种聚焦,该透镜由有序的颗粒链阵列组成。声音子弹的振幅,大小和位置可以通过改变链的静态预压缩来控制。理论和数值模拟证明了聚焦效果,光弹性实验证实了这一效果。我们的非线性透镜允许使用一种定性的新方式来产生高能声脉冲,这可以通过提高准确性和信噪比来提高成像能力,并可以产生更有效的非侵入式手术刀,例如用于癌症治疗。

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