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Acoustical and optical radiation pressure and the development of single beam acoustical tweezers

机译:声学和光学辐射压力和单光束声学镊子的开发

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Studies on radiation pressure in acoustics and optics have enriched one another and have a long common history. Acoustic radiation pressure is used for metrology, levitation, particle trapping and actuation. However, the dexterity and selectivity of single-beam optical tweezers are still to be matched with acoustical devices. Optical tweezers can trap, move and position micron size particles, biological samples or even atoms with subnanometer accuracy in three dimensions. One limitation of optical tweezers is the weak force that can be applied without thermal damage due to optical absorption. Acoustical tweezers overcome this limitation since the radiation pressure scales as the field intensity divided by the speed of propagation of the wave. However, the feasibility of single beam acoustical tweezers was demonstrated only recently. In this paper, we propose a historical review of the strong similarities but also the specificities of acoustical and optical radiation pressures, from the expression of the force to the development of single-beam acoustical tweezers. (C) 2017 Elsevier Ltd. All rights reserved.
机译:声学和光学辐射压力的研究彼此丰富,历史悠久。声辐射压力用于计量,悬浮,颗粒捕获和致动。然而,单光束光学镊子的灵活性和选择性仍然与声学装置匹配。光学镊子可以在三维中捕获,移动和定位微米尺寸粒子,生物样品或偶数原子。光学镊子的一个限制是可以在没有光学吸收而没有热损坏的情况下施加的弱力。声学镊子克服了这种限制,因为辐射压力尺度作为场强被除去波的传播速度。然而,最近仅证明了单光束声学镊子的可行性。在本文中,我们提出了对强烈相似之处的历史审查,而且来自声学和光学辐射压力的特殊性,从力的发动机的开发到单束声学镊子的发展。 (c)2017 Elsevier Ltd.保留所有权利。

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