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贝塞尔光束中任意阶数和位置的非球形物体上三维声辐射力的T矩阵评估。

T-matrix evaluation of three-dimensional acoustic radiation forces on nonspherical objects in Bessel beams with arbitrary order and location.

作者信息

Gong Zhixiong, Marston Philip L, Li Wei

机构信息

School of Naval Architecture and Ocean Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.

Department of Physics and Astronomy, Washington State University, Pullman, Washington 99164-2814, USA.

出版信息

Phys Rev E. 2019 Jun;99(6-1):063004. doi: 10.1103/PhysRevE.99.063004.

Abstract

Acoustic radiation forces (ARFs) induced by a single Bessel beam with arbitrary order and location on a nonspherical shape are studied using the T-matrix method (TMM) in three dimensions. Based on the radiation stress tensor approach and the multipole expansion method for the arbitrary Bessel beam, the ARF expressions are derived in terms of the incident and scattered beam shape coefficients independently with the corresponding homemade code packages. Several numerical experiments are conducted to verify the versatility of the TMM. The axial ARFs of several typical shapes are considered in the analysis, with the emphasis on the axial ARF reversal and the corresponding physical mechanism. This study may guide the experimental setup to find negative axial ARFs quickly and effectively based on the predicted parameters with TMM. Relatively elongated shapes may be helpful for pulling forces in Bessel beams. Furthermore, the lateral ARFs for both convex and concave nonspherical shapes are also investigated with different topological charges, cone angles, and offsets of the particle centroid to the beam axis in a broadband frequency regime. A brief theoretical derivation of the incident beam shape coefficients for the standing Bessel beams is also given. The present work could help to design the acoustic tweezers numerical toolbox, which provides an acoustical alternative to the optical tweezers toolbox.

摘要

利用三维T矩阵方法(TMM)研究了具有任意阶数和位置的单个贝塞尔光束在非球形物体上产生的声辐射力(ARF)。基于辐射应力张量方法和任意贝塞尔光束的多极展开方法,通过相应的自制代码包,独立地根据入射光束和散射光束形状系数推导出ARF表达式。进行了几个数值实验以验证TMM的通用性。分析中考虑了几种典型形状的轴向ARF,重点是轴向ARF反转及其相应的物理机制。本研究可以指导实验设置,以便根据TMM预测的参数快速有效地找到负轴向ARF。相对细长的形状可能有助于在贝塞尔光束中产生拉力。此外,还研究了宽带频率范围内不同拓扑电荷、锥角以及粒子质心到光束轴的偏移量对凸形和凹形非球形物体横向ARF的影响。还给出了驻波贝塞尔光束入射光束形状系数的简要理论推导。目前的工作有助于设计声镊数值工具箱,为光镊工具箱提供一种声学替代方案。

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