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Influence of the Condenser on Sample Tracking via Forward Scattering Pattern Detection

机译:冷凝器对通过正向散射模式检测进行样品跟踪的影响

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Sample tracking with a high spatial sensitivity is highly desired in force measurement with optical tweezers. However, the trick that sample tracking via forward scattering pattern detection would provide a higher sensitivity than that via regular image detection has never been investigated. In this paper, we systematically study the influences of the position and the numerical aperture of the condenser on sample tracking via forward scattering pattern detection. In our experiment, a 60X condenser is used to form the forward scattering pattern of a sample bead upon a CCD camera. As the bead is transversely shifted at a step size of 30nm by a PZT XYZ stage, we measure the magnitude of the corresponding shift of the forward scattering pattern when the 60X condenser of different angular apertures is placed at various locations along the optical axis. Our result shows that the most sensitive forward scattering pattern occurs when the condenser collimates the forward scattering light from the sample bead We also find that the larger the numerical aperture is, the higher the sensitivity of forward scattering pattern detection will be.
机译:在使用光学镊子进行力测量中,非常需要具有高空间灵敏度的样品跟踪。然而,从未研究过通过前向散射模式检测来进行样本跟踪的技巧比通过常规图像检测来提供更高的灵敏度的技巧。在本文中,我们通过前向散射模式检测系统地研究了聚光镜的位置和数值孔径对样品跟踪的影响。在我们的实验中,使用60倍聚光镜在CCD相机上形成样品珠的前向散射图案。由于珠子在PZT XYZ平台上以30nm的步长横向移动,因此当不同角度孔径的60X聚光镜沿光轴放置在不同位置时,我们测量前向散射图案的相应移动幅度。我们的结果表明,当聚光镜准直来自样品微珠的正向散射光时,会出现最敏感的正向散射模式。我们还发现,数值孔径越大,正向散射模式检测的灵敏度越高。

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