首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Zeroth-order continuous vector frozen waves for light scattering: exact multiple expansion in the generalized Lorenz-Mie theory
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Zeroth-order continuous vector frozen waves for light scattering: exact multiple expansion in the generalized Lorenz-Mie theory

机译:用于光散射的零顺序连续载体冷冻波:广义Lorenz-Mie理论中的精确膨胀

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In this paper we theoretically investigate the exact beam shape coefficients (BSCs) of a specific and promising class of nondiffracting light waves for optical trapping and micro-manipulation known as continuous vector frozen waves (CVFWs). CVFWs are constructed from vector Bessel beams in terms of a continuous superposition (integral) over the longitudinal waventunber, the final longitudinal intensity pattern being determined through the specification of a given spectrum S(k(z)). The incorporation of such highly confined and micro-structured fields into the theoretical framework of the generalized Lorenz-Mie theory (GLMT) is a first step toward the integration of such beams with optical tweezers systems as potential laser beams for the multiple manipulation of micro-particles and nano-partides along their optical axis and in multiple transverse planes. Linear, azimuthal, and radial polarizations are considered, the BSCs being calculated using three distinct approaches. The results extend and complete previous works on discrete frozen waves for light scattering problems with the aid of the GLMT. (C) 2018 Optical Society of America
机译:在本文中,理论上,从理论上研究了用于光学捕获和微操纵的特定和有希望的非承诺类的精确光束形状系数(BSC),所述光波和微操纵称为连续载体冻结波(CVFW)。 CVFW在纵向波文中的连续叠加(积分)方面由载体贝塞尔光束构成,通过给定光谱S(k(z))的规格确定最终纵向强度图案。将这种高度限制和微结构化的磁场纳入广义Lorenz-Mie理论(GLMT)的理论框架中,是朝向光学镊子系统集成作为潜在激光束的第一步,用于多次操纵微型颗粒和纳米偏离它们的光轴和多个横向平面。考虑线性,方位角和径向偏振,使用三种不同的方法来计算BSC。结果借助GLMT借助于光散射问题延伸并完成先前的冰冻波。 (c)2018年光学学会

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