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线聚焦相位调制环阵扇形平面换能器构建的类贝塞尔声涡束。

Quasi-Bessel Acoustic-Vortex Beams Constructed by the Line-Focused Phase Modulation for a Ring Array of Sectorial Planar Transducers.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2022 Jan;69(1):377-385. doi: 10.1109/TUFFC.2021.3120285. Epub 2021 Dec 31.

Abstract

Acoustic Bessel beams are commonly used as ideal sources to study the characteristics for acoustic-vortex (AV) beams, exhibiting prosperous perspectives in contactless object manipulations and acoustic communications. However, accurate Bessel beams are difficult to construct using 2-D arrays in practical applications. By integrating active phase control and passive phase modulation to a ring array of sectorial planar transducers, quasi-Bessel AV (QB-AV) beams of arbitrary order are built by the line focus of AV fields in the current study. Based on Snell's refraction law, a circular sawtooth lens of phase modulation is designed to converge incident waves toward the beam axis at the same deflection angle. QB-AV beams constructed by the main lobes of the sectorial sources are demonstrated by theoretical derivations, numerical simulations, and quality evaluations, while those created by the sidelobes are neglected to avoid the pressure fluctuations in the near field. Experimental measurements for AV beams of different orders coincide basically with the simulations, demonstrating that line-focused QB-AV beams can be generated along the beam axis across the pressure peak. With the increase of the topological charge, the peak pressure of the beam decreases accordingly with a reduced effective axial range. The favorable results prove that, as a special kind of diffraction sources, the adjustable QB-AV beams may enable more important biomedical applications where Bessel beams are necessary, especially for the line-focused manipulation of biological and drug particles.

摘要

声贝塞尔光束通常被用作研究声涡旋 (AV) 光束特性的理想源,在非接触式物体操纵和声学通信方面具有广阔的应用前景。然而,在实际应用中,使用二维阵列很难构建精确的贝塞尔光束。通过将主动相位控制和被动相位调制集成到扇形平面换能器的环形阵列中,本研究通过 AV 场的线焦点构建了任意阶的准贝塞尔 AV (QB-AV) 光束。基于斯涅尔折射定律,设计了一个具有相位调制的圆形锯齿透镜,以相同的偏转角将入射波会聚到光束轴上。通过理论推导、数值模拟和质量评估,展示了由扇形源主瓣构建的 QB-AV 光束,而忽略了由旁瓣产生的光束,以避免近场的压力波动。不同阶数的 AV 光束的实验测量与模拟基本一致,证明了线聚焦 QB-AV 光束可以沿着光束轴在压力峰值处产生。随着拓扑电荷的增加,光束的峰值压力相应减小,有效轴向范围减小。有利的结果证明,作为一种特殊的衍射源,可调 QB-AV 光束可能会在需要贝塞尔光束的更重要的生物医学应用中得到应用,特别是用于生物和药物颗粒的线聚焦操纵。

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