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光学镊子的势场映射。

Potential mapping of optical tweezers.

机构信息

Department of Physics, Institute for Advanced Studies in Basic Sciences, Zanjan 45195-1159, Iran.

出版信息

Opt Lett. 2011 Aug 15;36(16):3284-6. doi: 10.1364/OL.36.003284.

Abstract

Optical tweezers are very often used for measurement of piconewton range forces. Depending on the displacement of the trapped bead, the trap may become stiffer which causes considerable underestimation of the measured force. We have shown, both by theory and experiment, that such a stiffening occurs for beads larger than 0.5 μm in radius. For the first time, we have shown that the displacement at which the stiffening starts is size dependent and that the stiffening starts at higher forces for larger beads. We have shown that for the applications, which simultaneous force measurement and position sensing are on demand (such as biopolymer stretching), mid-range sized (∼1.5 μm in radius) beads could be the best choice.

摘要

光学镊子常用于测量皮牛顿级别的力。由于被捕获的微球的位移,微阱可能会变得更硬,从而导致对测量力的严重低估。我们已经通过理论和实验证明,对于半径大于 0.5μm 的微球,会出现这种变硬现象。我们首次表明,开始变硬的位移与尺寸有关,并且对于较大的微球,开始变硬所需的力也更大。我们还表明,对于同时需要力测量和位置感应的应用(例如生物聚合物拉伸),中等尺寸(半径约为 1.5μm)的微球可能是最佳选择。

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