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Experimental determination of trapping efficiency of optical tweezers

机译:光镊捕获效率的实验确定

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We report an experimental determination of trapping efficiency of optical fields acting on spherical particles diluted in viscous fluids. This parameter was derived from experimentally calculated trap stiffness for micron-sized silica beads with particle radii of 1.5 and 4.8 microns, respectively. In order to obtain the trap stiffness, we used the equipartition theorem, and introduced an experimental procedure to calibrate the optical tweezers set-up. The method consists of the calculation of the trapping efficiency by using the curves of the trap stiffness vs. the incident power. Using this approach we measured the efficiency for different values of displacements of the beads in the optical trap, and compared these results with numerical and theoretical calculations reported in the literature, and an excellent agreement was found. We have shown that the ratio of efficiencies is very close to the ratio of the particle radii.
机译:我们报告了一个实验确定的作用于稀释在粘性流体中的球形颗粒上的光场的捕获效率。该参数来自于实验计算得出的粒径分别为1.5和4.8微米的微米级二氧化硅珠的陷阱刚度。为了获得陷波器的刚度,我们使用了等分定理,并引入了一个实验程序来校准光镊的设置。该方法包括使用捕集阱刚度对入射功率的曲线计算捕集效率。使用这种方法,我们测量了在光阱中珠的不同位移值的效率,并将这些结果与文献中报道的数值和理论计算进行了比较,发现了一个很好的一致性。我们已经证明效率比与粒子半径比非常接近。

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