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Characterizing the rotation of non symmetric objects in an optical tweezer

机译:表征光学镊子中非对称物体的旋转

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摘要

We present an optical tweezer based study of the rotation of microscopic objects with shape asymmetry. Thermal fluctuations and rotations are simultaneously monitored through laser back scattering. The rotation causes a modulation in intensity of the back scattered light incident on a quadrant photo detector. The resulting power spectrum is a modified Lorentzian with additional peaks located at the fundamental rotational frequency of the object and at the integer harmonics. The manifestation of these peaks reveals that the rotations are periodic but with varying angular velocity. We model our experimental results to illustrate the hydrodynamic interplay between the rotor and the surrounding medium that results in the time dependence of the angular speed of the former. Further, we demonstrate the use of video microscopy for characterization of low reflectivity rotors, such as biological cells. We propose through these studies that an analysis of these rotations can provide insights into the role of hydrodynamics at micron levels.
机译:我们提出了一种基于光学镊子的具有形状不对称性的微观物体旋转的研究。通过激光反向散射可同时监视热波动和旋转。旋转引起入射在象限光电检测器上的反向散射光的强度调制。产生的功率谱是经过修改的洛伦兹定律,其附加峰值位于对象的基本旋转频率和整数谐波处。这些峰的表现表明旋转是周期性的,但角速度变化。我们对实验结果进行建模,以说明转子与周围介质之间的流体动力学相互作用,从而导致转子的角速度与时间有关。此外,我们演示了使用视频显微镜表征低反射率转子(例如生物细胞)的特性。通过这些研究,我们建议对这些旋转的分析可以提供对微米级水动力作用的见解。

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