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Dynamic Effects of Laser Action on Quasi-Two-Dimensional Dusty Plasma Systems of Charged Particles

机译:激光动作对带电粒子准二维粉尘等离子体系统的动态效应

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摘要

We present the results of an experimental study of the behavior of a colloidal plasma system formed by copper-coated and uncoated polymer particles under the action of laser irradiation. A comparative study of particle velocity distribution profiles depending on the power of the pushing laser was conducted. In the case of uncoated melamine-formaldehyde (MF) particles, we observed the well-known action of light pressure, causing shear stress in the colloidal plasma structure and leading to the occurrence of a laminar flow within the affected area. For the copper-coated MF particles, we revealed some additional patterns of behavior for the dust particles, i.e., kinetic temperature growth due to laser radiation absorption by the copper coating, as well as the appearance of chaotic particle motion. We believe that this happens due to the existence of defects in the coating, causing asymmetric heating of the particles, which in turn leads to chaotic deviations of the photophoretic force pushing the particles in different directions.
机译:我们介绍了在激光照射作用下通过铜涂覆和未涂覆的聚合物颗粒形成的胶体血浆系统的行为的实验研究结果。进行了根据推动激光器功率的粒子速度分布剖面的比较研究。在未涂覆的三聚氰胺 - 甲醛(MF)颗粒的情况下,我们观察了众所周知的轻压作用,导致胶体等离子体结构中的剪切应力,并导致受影响区域内的层流的发生。对于铜涂覆的MF颗粒,我们揭示了粉尘颗粒的一些额外的行为模式,即由于铜涂层的激光辐射吸收而导致的动力学生长,以及混沌颗粒运动的外观。我们认为这是由于涂层中缺陷的存在而发生的,导致颗粒的不对称加热,这反过来导致光学机动力在不同方向上推动颗粒的混沌偏差。

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