论文标题

声音悬浮的锁和钥匙谷物

Acoustically levitated lock and key grains

论文作者

Lim, Melody X., Jaeger, Heinrich M.

论文摘要

我们提出了一种使用声音悬浮的毫米尺度粒子之间形状依赖性的特定键的方案。我们将颗粒悬浮在超声波驻波中,从而允许无基质组件。二次散射在颗粒之间产生形状依赖的吸引力,同时将声学陷阱驱动到其共振频率上方的声学陷阱会产生模仿有效温度的主动波动。我们3D打印平面粒子,并表明其结合位点的局部曲率控制着连接匹配粒子的选择性。我们发现,可以分别通过结合位点的深度和高度独立调整界限概率和界限寿命。最后,我们表明这些原理可用于设计组装成复杂结构的粒子。

We present a scheme for generating shape-dependent, specific bonds between millimeter scale particles, using acoustic levitation. We levitate particles in an ultrasonic standing wave, allowing for substrate-free assembly. Secondary scattering generates shape-dependent attractive forces between particles, while driving the acoustic trap above its resonance frequency produces active fluctuations that mimic an effective temperature. We 3D print planar particles, and show that the local curvature of their binding sites controls the selectivity for attaching a matching particle. We find that the bound-state probability and bound-state lifetime can be independently tuned via the binding site depth and height respectively. Finally, we show that these principles can be used to design particles that assemble into complex structures.

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