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Axial optical trapping forces on two particles trapped simultaneously by optical tweezers

机译:轴向光捕获力作用于由光镊同时捕获的两个粒子上

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Optical tweezers, which utilize radiation pressure to control and manipulate microscopic particles, are used for a large number of applications in biology and colloid science. In most applications a single optical tweezers is used to control one single particle. However, two or more particles can be trapped simultaneously. Although this characteristic has been used in applications, no theoretical analysis of the trapping force or the status of the trapped particles is available to our knowledge. We present our calculation, using a ray optics model, of the axial trapping forces on two rigid particles trapped in optical tweezers. The spherical aberration that results from a mismatch of the refractive indices of oil and water is also considered. The results show that the forces exerted by the optical tweezers on the two particles will cause the two particles to touch each other, and the two particles can be stably trapped at a joint equilibrium point. We also discuss the stability of axial trapping. The calculation will be useful in applications of optical tweezers to trap multiple particles.
机译:利用辐射压力来控制和操纵微观粒子的光镊被广泛用于生物学和胶体科学领域。在大多数应用中,单个光镊用于控制一个单个粒子。但是,可以同时捕获两个或多个粒子。尽管此特性已在应用中使用,但据我们所知,尚无关于捕获力或捕获粒子状态的理论分析。我们使用射线光学模型介绍了在镊子中捕获的两个刚性粒子上的轴向捕获力的计算结果。还考虑了由于油和水的折射率不匹配而引起的球差。结果表明,光镊在两个粒子上施加的力将导致两个粒子相互接触,并且两个粒子可以稳定地捕获在联合平衡点处。我们还将讨论轴向陷井的稳定性。该计算将在光镊捕获多个颗粒的应用中很有用。

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