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Acoustics of finite asymmetric exotic beams: Examples of Airy and fractional Bessel beams

机译:有限非对称奇异光束的声学:艾里和分数贝塞尔光束的示例

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摘要

The purpose of this investigation is to examine the properties of finite asymmetric exotic scalar (acoustic) beams with unusual properties using the angular spectrum decomposition in plane waves. Such beams possess intrinsic uncommon characteristics that make them attractive from the standpoint of particle manipulation, handling and rotation, and possibly other applications in particle clearing and separation. Assuming a specific apodization function at the acoustic source, the angular spectrum function is calculated and used to synthesize the radiated pressure field (i.e., excluding evanescent waves that decay away from the source) in the forward direction of wave motion (i.e., away from the source). Moreover, a generalized hybrid method combining the angular spectrum approach with the multipole expansion formalism in spherical coordinates is developed, which is applicable to any finite beam of arbitrary wavefront. The improved approach allows adequate computation of the resonance scattering, radiation force, and spin torque components on an object of arbitrary shape, located on or off the axis of the incident beam in space. Considering the illustrative example of a viscous fluid sphere submerged in a non-viscous liquid and illuminated by finite asymmetric beams such as the Airy and the Bessel vortex beam with fractional order, numerical computations for the scattering, radiation force, and torque components are performed with an emphasis on the distance from the source, the arbitrary location of the particle ,and the asymmetric nature of the incident field. Moreover, beamforming calculations are presented with supplementary animations for the pressure field distribution in space, with an emphasis on the intrinsic properties of the selected beams. The numerical predictions illustrate the scattering, radiation force, and spin torque properties depending on the beam parameters and the distance separating the sphere from the source. This study provides a generalized hybrid method to analyze quantitatively the scattering, radiation force, and spin torque by any finite asymmetric (or symmetric) acoustic beam with potential applications in various fields of applied physics (such as beam-forming, imaging, and mechanical effects of asymmetric sound beams).
机译:这项研究的目的是使用平面波中的角谱分解来检查具有非寻常特性的有限非对称奇异标量(声)束的特性。这样的光束具有固有的不常见特性,从粒子操作,处理和旋转以及粒子清除和​​分离的其他应用的角度来看,它们具有吸引力。假设在声源处具有特定的变迹函数,则计算角谱函数并将其用于在波运动的正向方向(即,远离声源)上辐射压力场(即,不包括衰减远离声源的渐逝波)。资源)。此外,提出了一种将角谱方法与球坐标系中的多极展开形式相结合的广义混合方法,该方法适用于任意波阵面的任何有限光束。改进的方法允许对任意形状的物体的共振散射,辐射力和自旋扭矩分量进行适当的计算,该物体位于空间中入射光束的轴上或轴外。考虑到粘性流体球体浸没在非粘性液体中并由有限的不对称光束(如分数阶的Airy和Bessel涡旋光束)照亮的说明性示例,使用以下公式执行散射,辐射力和扭矩分量的数值计算:强调距源的距离,粒子的任意位置以及入射场的不对称性质。此外,波束成形计算还提供了用于空间压力场分布的补充动画,重点是所选波束的固有特性。数值预测说明了散射,辐射力和自旋扭矩属性,具体取决于光束参数和将球体与源分开的距离。这项研究提供了一种通用的混合方法,可以定量分析任何有限的非对称(或对称)声束的散射,辐射力和自旋扭矩,并在各种应用物理领域(例如束形成,成像和机械效应)中潜在应用不对称声束)。

著录项

  • 来源
    《Journal of Applied Physics》 |2017年第22期|224903.1-224903.10|共10页
  • 作者

    F. G. Mitri;

  • 作者单位

    Chevron, Area 52 Technology-ETC, 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
  • 关键词

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