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首页> 外文期刊>Journal of Modern Optics >Performance of a rotating aperture for spinning and orienting objects in optical tweezers
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Performance of a rotating aperture for spinning and orienting objects in optical tweezers

机译:用于旋转和定向光学镊子中物体的旋转孔的性能

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摘要

The spinning of asymmetric objects trapped within optical tweezers that have a rotating rectangular aperture inserted into the trapping laser beam is characterized. The measured maximum rotation rates of various asymmetric micron-sized objects are in agreement with a linear dependence on laser power. Maximum rotation rates of up to 0.2 Hz per mW of laser power suggest that rotation rates in the region of 10-20 Hz should be readily achievable in commercially available tweezers that have been modified by the inclusion of a rotating rectangular aperture. In addition, the possibility to alter the orientation of the aperture allows convenient control over the orientation of tweezed objects.
机译:表征了被捕获在光镊内的不对称物体的旋转,该光镊具有插入捕获激光束的旋转矩形孔。各种不对称微米尺寸物体的最大测得转速与激光功率的线性相关性一致。每mW激光功率最高可达到0.2 Hz的最大旋转速率表明,在市场上可买到的镊子中应易于获得10-20 Hz范围内的旋转速率,该镊子已通过包含旋转矩形孔进行了修改。另外,改变孔的方向的可能性允许方便地控制镊子的方向。

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