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Compact interferometric optical tweezer for patterned trapping and manipulation of polystyrene spheres and SWCNTs

机译:紧凑型干涉光学镊子,用于聚苯乙烯球和SWCNT的图案化捕集和处理

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摘要

We demonstrate a simple and compact optical interferometric unit combined with a conventional optical tweezer system for simultaneous multiple trapping and micromanipulation of mono-dispersed polystyrene spheres and aggregation of small-floating clusters of single-walled carbon nanotubes (SWCNTs). The interferometric unit was made compact by means of coating a thin layer of aluminum oxide on one side of the cubic beam splitter (CBS) which works as a static reference mirror and an adjustable mirror was mounted on a XYZ translational stage facing the other adjacent side of the CBS. Thus, the developed interferometric unit is quite analogous to a Michelson interferometer but is compact. Sinusoidal interference fringes with variable carrier frequency and orientations were generated. The interference fringes were then used for multiple trapping of polystyrene spheres along bright fringes resulting in pattern formation and also the aggregation of tiny floating clusters of SWCNTs. The proposed system is compact and easy to align because of its common-path geometry.
机译:我们展示了一个简单而紧凑的光学干涉仪,与传统的光学镊子系统相结合,可以同时对单分散的聚苯乙烯球体进行多次捕获和显微操作,以及对单壁碳纳米管(SWCNTs)的小浮簇进行聚集。通过在立方分束器(CBS)的一侧上涂覆一层氧化铝薄层来使干涉仪变得紧凑,该分束器用作静态参考镜,并且在面向另一相邻面的XYZ平移台上安装可调镜CBS。因此,开发的干涉仪非常类似于迈克尔逊干涉仪,但结构紧凑。产生了具有可变载波频率和方向的正弦干涉条纹。然后,将干涉条纹用于沿明亮条纹多次捕获聚苯乙烯球,从而导致图案形成以及SWCNT的微小漂浮簇的聚集。由于其公共路径的几何形状,所提出的系统紧凑且易于对准。

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