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Laser-driven optothermal microactuator operated in water

机译:激光驱动的光学热量微致动器在水中操作

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摘要

This paper proposes and studies the characteristics of a laser-driven optothermal microactuator (OTMA) directly operated in water. A theoretical model of optothermal temperature rise and expansion is established, and simulations on a 1000 mu m long OTMA are conducted, revealing that its armis able to expand and contract in response to the laser pulses in a water environment. Microactuating experiments are further carried out using a microfabricated OTMA. The results demonstrate that the OTMA can be practically actuated in water by a 650 nm laser beam and that the OTMA's deflection amplitude increases linearly with laser power. When irradiated by laser pulses with 9.9 mW power and 0.9-25.6 Hz frequencies, the OTMA achieves deflection amplitude ranging from 3.9 to 3.2 mu m, respectively. The experimental results match well with theoretical model when taking the damping effect of water into account. This research may be conducive to developing particular micro-electromechanical systems or micro-optoelectromechanical devices such as underwater optothermal micromotors, micro-pumps, micro-robots, and other underwater microactuators. (C) 2020 Optical Society of America
机译:本文提出并研究了在水中直接操作的激光驱动光学热微致动器(OTMA)的特性。建立了光热升温和膨胀的理论模型,并进行了1000 mu长的OTMA的模拟,揭示其ARMIS能够响应于水环境中的激光脉冲而扩展和收缩。使用微羧酸的OTMA进一步进行微疾用实验。结果表明,OTMA可以通过650nm激光束实际上在水中致动并且OTMA的偏转幅度随着激光功率而线性增加。当受激光脉冲带有9.9 MW功率和0.9-25.6 Hz频率的激光脉冲时,OTMA分别达到3.9至3.2μm的偏转幅度。实验结果与理论模型相匹配,以考虑水的阻尼效果。该研究可能有利于开发特定的微机电系统或微光电机械设备,例如水下光热量微电子,微泵,微机器人和其他水下微致动器。 (c)2020美国光学学会

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    《Applied optics》 |2020年第6期|共6页
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