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固体垂直边界附近等离子体蒸汽微气泡的亚兆赫兹成核

Submegahertz Nucleation of Plasmonic Vapor Microbubbles near a Solid Vertical Boundary.

作者信息

Wang Fulong, Hu Zhibin, Zeng Binglin, Xia Chenliang, Dong Lihua, Wang Huimin, Yang Lijun, Wang Yuliang

机构信息

Robotics Institute, School of Mechanical Engineering and Automation, <a href="https://ror.org/00wk2mp56">Beihang University</a>, Beijing 100191, People's Republic of China.

National Center for Materials Service Safety, <a href="https://ror.org/02egmk993">University of Science and Technology Beijing</a>, Beijing 100083, People's Republic of China.

出版信息

Phys Rev Lett. 2024 Aug 9;133(6):064001. doi: 10.1103/PhysRevLett.133.064001.

Abstract

Laser triggered and photothermally induced vapor bubbles have emerged as promising approaches to facilitate optomechanical energy conversion for numerous applications in microfluidics and nanofluidics. Here, we report an observation of spontaneously triggered periodic nucleation of plasmonic vapor bubbles near a rigid sidewall with readily tuned nucleation frequency from 0.8 kHz to over 200 kHz. The detailed collapsing process of the vapor bubbles was experimentally and numerically investigated. We find that the lateral migration of residual bubbles toward the sidewall refreshes the laser spot area, terminates the subsequent steady bubble growth, and leads to the repeatable bubble nucleation. A mathematic model regarding the Kelvin impulses was derived. It shows that the competition between the rigid boundary induced Bjerknes force and laser irradiation caused thermal Marangoni force on collapsing bubbles governs the process. The model also leads to a criterion of γζ<0.34 for repeatable bubble nucleation, where γ is the normalized distance and ζ thermal Marangoni coefficient. This study demonstrates nucleation of violent vapor bubbles at extreme high frequencies, providing an approach to remotely realize strong localized flows in microfluidics and nanofluidics.

摘要

激光触发和光热诱导的蒸汽泡已成为促进光机械能转换的有前景的方法,可用于微流体和纳流体中的众多应用。在此,我们报告了在刚性侧壁附近观察到的等离子体蒸汽泡的自发触发周期性成核现象,其成核频率可轻松从0.8 kHz调节至超过200 kHz。通过实验和数值方法对蒸汽泡的详细坍塌过程进行了研究。我们发现,残余气泡向侧壁的横向迁移会刷新激光光斑区域,终止随后的稳定气泡生长,并导致可重复的气泡成核。推导了一个关于开尔文冲量的数学模型。结果表明,刚性边界诱导的毕耶克内斯力与激光照射引起的坍塌气泡上的热马兰戈尼力之间的竞争控制了这一过程。该模型还得出了可重复气泡成核的γζ<0.34的判据,其中γ是归一化距离,ζ是热马兰戈尼系数。这项研究展示了在极高频率下剧烈蒸汽泡的成核现象,为在微流体和纳流体中远程实现强局部流动提供了一种方法。

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