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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Optical force on a large sphere illuminated by Bessel beams: comparisons between ray optics method and generalized Lorenz-Mie theory
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Optical force on a large sphere illuminated by Bessel beams: comparisons between ray optics method and generalized Lorenz-Mie theory

机译:贝塞尔光束照射的大球体上的光学力:射线光学方法与广义Lorenz-Mie理论之间的比较

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摘要

Optical forces are calculated for a dielectric spherical particle illuminated by a zero-order Bessel beam based on both the generalized Lorenz-Mie theory (GLMT) and the ray optics method (ROM). Particles with positive and negative refractive indices are examined. The peculiar characteristics of the Bessel beam allow for analytical expressions for the beam shape coefficients required in the GLMT as well as a decomposition of optical force into the gradient and the scattering forces irrespective of the particle size, which enable respective comparisons for the gradient and scattering forces between the results obtained from the GLMT and the ROM. Our results demonstrate that the discrepancy between the results obtained from the GLMT and the ROM depends on the particle refractive index n_p, the particle size, and, also, the particle location in the beam field. As the particle size increases, the difference between the results from the GLMT and the ROM shows a general tendency of decreasing, as can be expected, but the change may exhibit oscillatory rather than monotonic behavior. A phase diagram is presented that displays the regime for particle size and refractive index where a specified accuracy can be achieved for optical force by the ROM.
机译:根据广义的Lorenz-Mie理论(GLMT)和射线光学方法(ROM),计算由零级贝塞尔光束照射的介电球形粒子的光学力。检查具有正和负折射率的颗粒。贝塞尔光束的独特特性允许对GLMT中所需的光束形状系数进行解析表达式,以及将光学力分解为梯度和散射力(与粒径无关),从而可以分别比较梯度和散射从GLMT和ROM获得的结果之间的力。我们的结果表明,从GLMT和ROM获得的结果之间的差异取决于粒子折射率n_p,粒子大小以及粒子在光束场中的位置。随着粒度的增加,如预期的那样,GLMT和ROM的结果之间的差异显示出减小的总体趋势,但是这种变化可能表现出振荡而不是单调的行为。给出了一个相图,该相图显示了粒度和折射率的范围,其中ROM可以实现特定的光学力精度。

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