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Dynamic acoustic tractor beams Ⅱ: Oscillatory powers, cross sections, and energy efficiencies of a spherical non-viscous liquid droplet

机译:动态声学拖拉机梁Ⅱ:球形非粘性液滴的振荡功率,横截面和能量效率

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摘要

A previous work on dynamic acoustic tractor beams [Mitri, J. Appl. Phys. 117, 094903 (2015)] demonstrated the feasibility of pulling a liquid sphere toward a finite circular piezo-disk transducer and vibrating it around an equilibrium position at the beat frequency of two interfering waves driven at slightly different frequencies. The analysis is extended here to investigate the oscillatory phenomenon from the standpoint of energy conservation applied to scattering. Expressions for dynamic scattering, extinction and absorption powers, and their related cross sections and energy efficiencies are formally defined and derived based on the partial-wave series expansion method in spherical coordinates and the short-term time averaging (STTA) procedure. A circular flat piston transducer insonifying a spherical liquid hexane droplet (with arbitrary radius) centered on the axis of wave propagation is considered. Numerical predictions for dynamic extinction and scattering energy efficiencies illustrate the theory. A percentage error criterion related to extinction and scattering energy efficiencies is defined. Computations are also performed to quantify the numerical inaccuracy introduced by the difference-frequency component of the STTA. This criterion must be always utilized as a benchmark tool to validate dynamic radiation force computations. The results show that the percent error (induced by the difference-frequency component of the STTA process) increases as the dimensionless difference-frequency Δka increases. The present analysis is of some importance to validate dynamic radiation force numerical computations from the standpoint of energy conservation, used in the design and optimization of dynamic/oscillatory acoustic tractor beams and single-beam tweezers.
机译:先前的动态声学拖拉机梁[Mitri,J.Phamp。物理。 117,094903(2015)]证明将液体球朝向有限圆形压电盘换能器拉动的可行性,并在两个干涉波处的拍频处振动其围绕平衡位置,其两个干涉波以略有不同的频率驱动。这里的分析扩展,从应用于散射的节能观点来研究振荡现象。用于动态散射,消光和吸收功率的表达,以及它们的相关横截面和能量效率基于球形坐标中的部分波串联膨胀方法和短期时间平均(STTA)程序来确定和导出。考虑一种圆形的活塞换能器,其铭刻在波传播轴上以波传播为中心的球形液体己烷液滴(具有任意半径)。动态灭绝和散射能量效率的数值预测说明了理论。定义了与灭火和散射能量效率相关的百分比误差标准。还执行计算以量化由STTA的差分频率分量引入的数值不准确性。必须始终使用该标准作为验证动态辐射力计算的基准工具。结果表明,随着无量纲差频率ΔKA的增加,百分比(由STTA过程的差频分量引起的)误差增加。目前的分析是从节能的角度验证动态辐射力数值的重要性,用于动态/振荡声学拖拉机梁和单光束镊子的设计和优化。

著录项

  • 来源
    《Journal of Applied Physics》 |2020年第24期|244903.1-244903.9|共9页
  • 作者

    F. G. Mitri;

  • 作者单位

    Santa Fe New Mexico 87508 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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