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Scanning mirror on a vibrating membrane for dynamic optical trapping

机译:振动膜上的扫描镜用于动态光阱

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We report a simple technique for the dynamic optical trapping of colloidal particles. The main feature of this technique is an addition of a scanning mirror on a vibrating membrane in the optical train of a typical optical tweezers setup. When the membrane is vibrated using sound input from a normal speaker, the laser beam that is reflected off the mirror traces out a wide variety of laser patterns of Lissajous figures depending on the input sound frequency and amplitude. The resultant pattern is subsequently focused down by a laser tweezers setup onto an aqueous suspension of monodispersed polystyrene microspheres. As a result, a wide variety of planar assemblies of the colloidal microspheres corresponding to the laser patterns are organized. In addition to the optical trapping force, the scanning laser also exerts a driving force on the microspheres. Optically assisted assemblies of microspheres can hence be manipulated to translate along the laser scanning pattern. In an elliptically patterned optical trap, repetitive scanning of the focused laser beam over an assembly of optically trapped microspheres drives the microspheres into rotation.
机译:我们报告了一种简单的技术,用于动态胶体粒子的光学捕获。该技术的主要特征是在典型的光镊装置的光学系统中,在振动膜上增加了扫描镜。当使用普通扬声器输入的声音来振动膜片时,从镜子反射回来的激光束会根据输入的声音频率和振幅,绘制出各种各样的利萨如图形的激光图案。随后通过激光镊子将所得图案聚焦在单分散聚苯乙烯微球的水悬浮液上。结果,对应于激光图案的胶体微球的各种平面组件被组织。除光学捕获力外,扫描激光器还在微球上施加驱动力。因此,可以操纵微球的光学辅助组件以沿着激光扫描图案平移。在椭圆图案化的光阱中,聚焦激光束在光学捕获的微球组件上的重复扫描会驱动微球旋转。

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