Paraxial and ray approximations of acoustic vortex beams.

Chirag A. Gokani, M. Haberman, Mark F. Hamilton
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Abstract

A compact analytical solution obtained in the paraxial approximation is used to investigate focused and unfocused vortex beams radiated by a source with a Gaussian amplitude distribution. Comparisons with solutions of the Helmholtz equation are conducted to determine bounds on the parameter space in which the paraxial approximation is accurate. A linear relation is obtained for the dependence of the vortex ring radius on the topological charge, characterized by its orbital number, in the far field of an unfocused beam and in the focal plane of a focused beam. For a focused beam, it is shown that as the orbital number increases, the vortex ring not only increases in radius but also moves out of the focal plane in the direction of the source. For certain parameters, it is demonstrated that with increasing orbital number, the maximum amplitude in a focused beam becomes localized along a spheroidal surface enclosing a shadow zone in the prefocal region. This field structure is described analytically by ray theory developed in the present work, showing that the spheroidal surface in the prefocal region coincides with a simple expression for the coordinates of the caustic surface formed in a focused vortex beam.
声学涡流束的准轴近似和射线近似。
利用在准轴近似中获得的紧凑分析解来研究由高斯振幅分布源辐射的聚焦和非聚焦涡流束。通过与亥姆霍兹方程的解进行比较,确定了准轴向近似精确的参数空间范围。在非聚焦光束的远场和聚焦光束的焦平面上,获得了涡环半径与拓扑电荷(以其轨道数为特征)的线性关系。对于聚焦光束,研究表明,随着轨道数的增加,涡环不仅半径增大,而且会沿光源方向移出焦平面。对于某些参数,研究表明,随着轨道数的增加,聚焦光束中的最大振幅会沿着一个球面局部集中,在前焦区包围一个阴影区。本研究用射线理论对这种场结构进行了分析描述,结果表明,前焦区的球面与聚焦涡束中形成的苛面坐标的简单表达式相吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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