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Two particle tracking and detection in a single Gaussian beam optical trap

机译:单个高斯光束光阱中的两个粒子跟踪和检测

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We have studied in detail the situation wherein two microbeads are trapped axially in a single-beam Gaussian intensity profile optical trap. We find that the corner frequency extracted from a power spectral density analysis of intensity fluctuations recorded on a quadrant photodetector (QPD) is dependent on the detection scheme. Using forward-and backscattering detection schemes with single and two laser wavelengths along with computer simulations, we conclude that fluctuations detected in backscattering bear true position information of the bead encountered first in the beam propagation direction. Forward scattering, on the other hand, carries position information of both beads with substantial contribution from the bead encountered first along the beam propagation direction. Mie scattering analysis further reveals that the interference term from the scattering of the two beads contributes significantly to the signal, precluding the ability to resolve the positions of the individual beads in forward scattering. In QPD-based detection schemes, detection through backscattering, thereby, is imperative to track the true displacements of axially trapped microbeads for possible studies on light-mediated interbead interactions. (C) 2016 Optical Society of America
机译:我们已经详细研究了在单束高斯强度分布光阱中轴向捕获两个微珠的情况。我们发现,从对象限光电检测器(QPD)上记录的强度波动的功率谱密度分析中提取的转折频率取决于检测方案。使用具有单个和两个激光波长的前向和后向散射检测方案以及计算机模拟,我们得出结论,在后向散射中检测到的涨落具有在光束传播方向上首先遇到的磁珠的真实位置信息。另一方面,前向散射携带两个小珠的位置信息,其中首先沿光束传播方向遇到的小珠的贡献很大。 Mie散射分析进一步揭示了来自两个珠子散射的干扰项对信号有很大贡献,排除了在向前散射中解析单个珠子位置的能力。因此,在基于QPD的检测方案中,必须通过反向散射检测来跟踪轴向捕获的微珠的真实位移,以进行光介导的珠间相互作用的可能研究。 (C)2016美国眼镜学会

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