首页> 外文会议>International Congress on High-Speed Photography and Photonics >The Study of Optical Trapping Force from Optical Tweezers
【24h】

The Study of Optical Trapping Force from Optical Tweezers

机译:光学镊子光学俘获力的研究

获取原文

摘要

Optical tweezers use the forces exerted by a strongly focused beam of light to trap and move objects ranging in size from tens of nanometers to tens of micrometers. Since their introduction in 1986 , the optical tweezers has become an important tool for research in the field of biology, physical chemistry and so on. So the study and measure of optical trapping forces are important currently, and those are also helpful for the development of optical tweezers. At present the theoretical model has been established about the calculation method of optical tweezers. This document shows a method of optical tweezers on axis. The optical trapping force was measured and estimated in experiment. The theoretical model of optical trapping force on axis is different with different size particle. One is Mie particle which size is much larger than the laser wavelength. We can calculate the optical trapping force by the theoretical model based on geometrical-optics. Another is Rayleigh particle which size is much smaller than the laser wavelength. We can calculate the optical trapping force by the theoretical model based on electromagnetics. A method was presented mainly about the calculation of optical trapping force on axis in this document. Under given parameters, the numerical simulation of the optical trapping force on particle was demonstrated. And the important impacts of the parameters were discussed including the radius of the beam waist, the laser wavelength, the laser power, particle radius and so on. Through the numerical simulation, they have the close relation between the different system parameters and the optical trapping force. The optical trap will change shallow along with the radius of the beam waist increasing. On the contrary, the optical trap will change deep along with the laser power increasing. They have a best optical trap scope between the laser wave length and the particle radius. Thus, we can choose the appropriate parameters in the experiment to obtain the best optical trapping force. We captured and moved a particle by a strongly focused beam of laser in experiment. In order to obtain the escaping speed, we control platform steadily and record the entire capture process through the CCD imaging system. Figuring out the escaping speed from the known two time interval and the granule displacement value, we can estimate the optical trapping force by Stocks formula.
机译:光学镊子使用强烈聚焦光束施加的力来捕获和移动尺寸范围的物体,从数十纳米到数十微米。自1986年介绍以来,光学镊子已成为生物学,物理化学等领域的重要工具。因此,目前光学捕获力的研究和衡量是重要的,而且对光学镊子的发展也有助于。目前,已经建立了理论模型关于光学镊子的计算方法。本文档显示了轴上的光学镊子的方法。在实验中测量并估计光学捕获力。轴上的光学俘获力的理论模型与不同的尺寸粒子不同。一个是mie粒子的尺寸远大于激光波长。我们可以通过基于几何光学的理论模型来计算光学俘获力。另一个是瑞利粒子的尺寸远小于激光波长。我们可以通过基于电磁学的理论模型来计算光学俘获力。主要介绍了该文献中轴上的光学捕集力的计算。在给定参数下,证明了粒子上的光学俘获力的数值模拟。讨论了参数的重要影响,包括光束腰部的半径,激光波长,激光功率,粒径等。通过数值模拟,它们在不同的系统参数和光学俘获力之间具有密切关系。光学阱将随着梁腰部的半径而变化。相反,光学阱会随着激光功率的增加而变化。它们在激光波长和粒径之间具有最佳光学陷阱范围。因此,我们可以选择实验中的适当参数以获得最佳的光学捕获力。我们在实验中捕获并通过强烈聚焦的激光束移动了粒子。为了获得逃避速度,我们通过CCD成像系统稳定地控制平台并记录整个捕获过程。从已知的两个时间间隔和颗粒位移值中汲取逃逸速度,我们可以通过股票公式估计光学俘获力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号