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Theoretical simulation of Gaussian beam interferometric optical tweezers with symmetrical construction

机译:高斯光束干涉光学镊子对称结构的理论模拟

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摘要

Multi-beam optical tweezers can be very effective and suitable for creating optical lattices and dexterous manipulation of the microscopic world. In an earlier work, a symmetrical multi-beam optical tweezers setup was proposed and theoretically investigated. In that study, however, we assumed that the incident beams were plane waves, and a plane wave cannot exist in real situations. The main aim of this paper is to investigate multi-beam optical tweezers under the realistic condition of using the Gaussian beams. The effects of changing the polarization state and the number of incident beams on potential landscapes are investigated. A comparison between the Gaussian beam and plane wave lattices is also performed. The results show that in the case of p-polarization, a very small spot (a sub-lambda spot) can be achieved by increasing the number of incident beams. However, for s-polarized incident beams instead of a bright center, a dark center intensity distribution is obtained. The lattices constructed by the interference of the Gaussian beams have deeper traps in the central region compared to the plane wave lattices.
机译:多光束光学镊子可以非常有效,适用于产生光学格子和微观方式的赘言。在较早的工作中,提出了一种对称的多光束光学镊子设置,并理解地研究。然而,在该研究中,我们假设入射光束是平面波,并且在真实情况下不能存在平面波。本文的主要目的是在使用高斯光束的逼真条件下调查多光束光学镊子。研究了改变偏振状态的效果和在潜在的景观上的入射光束的次数。还执行高斯光束和平面波形格子之间的比较。结果表明,在p偏振的情况下,通过增加入射光束的数量,可以实现非常小的点(亚λ斑点)。然而,对于S偏振的入射光束而不是明亮的中心,获得了暗中心强度分布。由高斯光束的干涉构成的格子与平面波格格子相比,中央区域的更深陷阱。

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