物理
扭矩
声辐射力
角动量
各向同性
经典力学
偶极子
光学力
量子电动力学
动量(技术分析)
磁单极子
自旋(空气动力学)
计算物理学
量子力学
声学
光学镊子
财务
超声波
热力学
经济
作者
Ivan Toftul,Konstantin Y. Bliokh,Mihail Petrov,Franco Nori
标识
DOI:10.1103/physrevlett.123.183901
摘要
We examine acoustic radiation force and torque on a small (subwavelength) absorbing isotropic particle immersed in a monochromatic (but generally inhomogeneous) sound-wave field. We show that by introducing the monopole and dipole polarizabilities of the particle, the problem can be treated in a way similar to the well-studied optical forces and torques on dipole Rayleigh particles. We derive simple analytical expressions for the acoustic force (including both the gradient and scattering forces) and torque. Importantly, these expressions reveal intimate relations to the fundamental field properties introduced recently for acoustic fields: the canonical momentum and spin angular momentum densities. We compare our analytical results with previous calculations and exact numerical simulations. We also consider an important example of a particle in an evanescent acoustic wave, which exhibits the mutually orthogonal scattering (radiation-pressure) force, gradient force, and torque from the transverse spin of the field.
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