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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Comparative study of optical levitation traps: focused Bessel beam versus Gaussian beams
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Comparative study of optical levitation traps: focused Bessel beam versus Gaussian beams

机译:光学悬浮陷阱的比较研究:聚焦贝塞尔光束与高斯光束

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In optical levitation traps, a light beam propagating upward is focused with a relatively low numerical aperture (NA), producing a large scattering force along the propagation direction, which is balanced by the effective weight of a particle. Here, we present a detailed study of four levitation traps obtained when the trapping beam is a fundamental Gaussian mode focused with different NA, in comparison with a levitation trap obtained with a zero-order Bessel beam focused through a lens with NA = 0.40. A theoretical analysis for the optical field and trapping forces along the lateral and axial directions is presented for all the traps and contrasted with experimental results. We show that the focused Bessel trap offers highly superior capabilities for manipulation of individual glass beads in three dimensions, along with other advantages in comparison with standard optical tweezers, such as an extended working distance, larger field of view, and lower spherical aberration. (C) 2016 Optical Society of America.
机译:在光学悬浮陷阱中,向上传播的光束以相对较低的数值孔径(NA)聚焦,沿传播方向产生较大的散射力,该散射力由粒子的有效重量平衡。在这里,我们将对当捕获束是通过不同NA聚焦的基本高斯模式时获得的四个悬浮陷阱的详细研究,与通过NA = 0.40的透镜聚焦的零级贝塞尔光束所获得的悬浮陷阱进行比较。提出了对所有阱的沿横向和轴向的光场和阱力的理论分析,并与实验结果进行了对比。我们表明,聚焦的贝塞尔陷阱提供了在三个维度上处理单个玻璃珠的极强能力,以及与标准光学镊子相比的其他优势,例如工作距离更长,视野更大,球差更低。 (C)2016年美国眼镜学会。

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