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Optical Trapping of Metallic Nanoparticles using Microbubbles

机译:使用微泡对金属纳米颗粒的光学捕获

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In our previous work, the induced force on a microbubble due to a focused laser beam has been studied by deriving a general optical force model. It has also been shown that the microbubble, without and with agglomerated metallic nanoparticles, can be steered using a low power laser beam. An equivalent optical force for a microbubble surrounded by nanoparticles has been also calculated and presented in our previous work. While only optical forces acting on the microbubbles and nanoparticles have so far been considered, in this work the effect of surface tension force is considered and calculated using the temperature gradient generated by the focused trapping laser beam and compared with optical forces. Experiments are performed to observe the behavior of the microbubbles in the vicinity of a focused laser beam for five different wavelengths.
机译:在我们以前的工作中,已经通过推导一般的光学力模型研究了由于聚焦激光束而在微气泡上产生的力。还已经表明,可以使用低功率激光束来控制没有和带有聚集的金属纳米颗粒的微泡。还计算了纳米粒子包围的微气泡的等效光学力,并在我们以前的工作中介绍了该等效力。尽管到目前为止只考虑了作用在微气泡和纳米颗粒上的光学力,但在这项工作中,表面张力的作用是通过聚焦激光束产生的温度梯度来考虑和计算的,并将其与光学力进行比较。进行实验以观察聚焦在五个不同波长的激光束附近的微泡的行为。

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