论文标题
声自旋转移到亚波长球颗粒
Acoustic spin transfer to a subwavelength spheroidal particle
论文作者
论文摘要
我们证明,一阶贝塞尔束的声自旋可以转移到粘性流体中梁轴处的亚波长(pr酸)球形颗粒中。诱导的辐射扭矩与声自旋成正比,后旋转与梁的能量密度缩放。对Stokes的流动状态中粒子旋转动力学的分析表明,其角速度随声自旋线性变化。对于准和无限薄的粒子,获得了辐射扭矩和角速度的渐近表达。在辐射扭矩和有限元模拟的理论结果之间发现了极好的一致性。使用声学涡流镊子和悬浮装置的典型参数值预测并分析诱导的颗粒自旋。我们讨论如何通过测量颗粒的诱导旋转来评估梁的能量密度和流体粘度。
We demonstrate that the acoustic spin of a first-order Bessel beam can be transferred to a subwavelength (prolate) spheroidal particle at the beam axis in a viscous fluid. The induced radiation torque is proportional to the acoustic spin, which scales with the beam energy density. The analysis of the particle rotational dynamics in a Stokes' flow regime reveals that its angular velocity varies linearly with the acoustic spin. Asymptotic expressions of the radiation torque and angular velocity are obtained for a quasispherical and infinitely thin particle. Excellent agreement is found between the theoretical results of radiation torque and finite element simulations. The induced particle spin is predicted and analyzed using the typical parameter values of the acoustical vortex tweezer and levitation devices. We discuss how the beam energy density and fluid viscosity can be assessed by measuring the induced spin of the particle.