首页> 外文期刊>Journal of biomedical optics >Comparative study of methods to calibrate the stiffness of a single-beam gradient-force optical tweezers over various laser trapping powers
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Comparative study of methods to calibrate the stiffness of a single-beam gradient-force optical tweezers over various laser trapping powers

机译:在各种激光陷波功率下校准单光束梯度力光镊刚度的方法的比较研究

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摘要

Optical tweezers have become an important instrument in force measurements associated with various physical, biological, and biophysical phenomena. Quantitative use of optical tweezers relies on accurate calibration of the stiffness of the optical trap. Using the same optical tweezers platform operating at 1064 nm and beads with two different diameters, we present a comparative study of viscous drag force, equi-partition theorem, Boltzmann statistics, and power spectral density (PSD) as methods in calibrating the stiffness of a single beam gradient force optical trap at trapping laser powers in the range of 0.05 to 1.38 W at the focal plane. The equipartition theorem and Boltzmann statistic methods demonstrate a linear stiffness with trapping laser powers up to 355 mW, when used in conjunction with video position sensing means. The PSD of a trapped particle's Brownian motion or measurements of the particle displacement against known viscous drag forces can be reliably used for stiffness calibration of an optical trap over a greater range of trapping laser powers. Viscous drag stiffness calibration method produces results relevant to applications where trapped particle undergoes large displacements, and at a given position sensing resolution, can be used for stiffness calibration at higher trapping laser powers than the PSD method.
机译:光学镊子已经成为与各种物理,生物和生物物理现象相关的力测量的重要工具。光镊的定量使用依赖于对光阱的刚度的准确校准。使用工作在1064 nm的相同光学镊子平台和具有两个不同直径的珠子,我们将对粘性拖曳力,等分定理,玻尔兹曼统计量和功率谱密度(PSD)进行比较研究,作为校准硬度的方法。单光束梯度力光阱,在焦平面处捕获0.05至1.38 W的激光功率。当与视频位置传感装置结合使用时,等分定理和玻尔兹曼统计方法证明了线性刚度,捕获激光功率高达355 mW。被捕获粒子的布朗运动的PSD或相对于已知粘性阻力的粒子位移测量结果可以可靠地用于更大范围的捕获激光功率范围内的光阱的刚度校准。粘性阻力刚度校准方法产生的结果与被捕获的粒子发生大位移的应用有关,并且在给定的位置感应分辨率下,可用于比PSD方法更高的捕获激光功率下的刚度校准。

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