论文标题

能量流的普遍关系,近场镊子的声自旋和扭矩

Universal Relations of Energy Flow, Acoustic Spin and Torque for Near-Field Acoustic Tweezers

论文作者

Long, Yang, Yang, Chenwen, Chen, Hong, Ren, Jie

论文摘要

声自旋,辐射扭矩,能量和反应能力从根本和实际方面都至关重要,负责柔性镊子操纵和近场的声音方向性。然而,这些物理数量之间的内在关系远非清晰。在这里,我们证明了它们在声学中的普遍几何关系,独立于波浪结构细节。特别是,我们将声自旋和扭矩连接到时间平均的能量流量和反应能力的交叉产品,以及能量流的局部涡度。这些关系是普遍有效的,在各种不同的声学系统中得到了验证。我们还演示了在三个声学近场来源中产生的多极机械扭矩和力:janus,huygens和旋转源,应用于小损耗的颗粒。这些通用的几何关系发现了隐藏的锁定关系,而不是简单的旋转摩托马锁定近场波的锁定,并显示了声自旋,辐射扭矩和能量流量,反应力之间的基本原理。

Acoustic spin, radiation torque, energy flow, and reactive power are of significant importance from both fundamental and practical aspects, responsible for flexible tweezer manipulations and near-field sound directionality. Nevertheless, the intrinsic relations among these physical quantities are far from clear. Here, we prove the universal geometric relations among them in acoustics, independent on wave structure details. Particularly, we connect acoustic spin and torque to the cross product of time-averaged energy flow and reactive power, as well as to the local vorticity of energy flow. These relations are universally valid, verified in a variety of different acoustic systems. We also demonstrate the multipole mechanical torques and forces generated in three acoustic near-field sources: Janus, Huygens and Spin sources, applying on small lossy particles. These universal geometric relations uncover hidden locking relations beyond simple spin-momentum locking of near-field waves, and show the basic principles between the acoustic spin, radiation torque, and energy flow, reactive power.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源