Acoustic Torsional Mechanical Oscillator Driven by Wave-Matter Orbital Angular Momentum Transfer with Quality Factor >1000

Benjamin Sanchez-Padilla, Etienne Brasselet
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Abstract

The experimental realization of a macroscopic mechanical oscillator driven by the nondissipative transfer of angular momentum from sound waves to matter is presented, with quality factor up to Q ≈ 2000. This performance is two orders of magnitude higher than previously reported values Q ≈ 10. This result is achieved through the use of a monolithic metallic torsional pendulum and improved assembling method of the constitutive parts of the apparatus. This allows a substantial reduction of the internal losses associated with the imaginary part of the complex shear modulus compared with previous attempts using photocurable resin materials.

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由波-物质轨道角动量传递驱动的声扭转机械振荡器,品质因数大于 1000
本文介绍了通过角动量从声波到物质的非耗散转移驱动的宏观机械振荡器的实验实现,其品质因数高达 Q ≈ 2000。这一性能比之前报道的 Q ≈ 10 高出两个数量级。这一结果是通过使用整体金属扭摆和改进的仪器构成部件组装方法实现的。与之前使用光固化树脂材料的尝试相比,这大大减少了与复剪切模量虚部相关的内部损失。
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