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On longitudinal radiation pressure cross-sections in the generalized Lorenz-Mie theory and their numerical relationship with the dipole theory of forces

机译:在纵向辐射压力横截面上的广义洛伦茨 - MIE理论及其与偶极力学的数值关系

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A recent work devoted to the longitudinal optical forces exerted by circularly symmetric Bessel beams on point-like particles in the Rayleigh regime of the generalized Lorenz-Mie theory (GLMT) confirmed the existence of non-standard forces (named axicon forces in the context of Bessel beams) that seemingly cannot be expressed in terms of scattering and gradient forces traditionally discussed in the framework of the dipole theory of forces. These results lead to this question: Do the Rayleigh limit of the GLMT and the dipole theory of forces actually agree, or are they in disagreement? If so, the Rayleigh limit of the generalized Lorenz-Mie theory would have to be preferred because it provides a highly accurate formulation. To find a definitive answer to the question, numerical comparisons done between optical forces exerted in both frameworks demonstrated an extremely accurate agreement up to 1000 decimal places. This leads to the conjecture that the Rayleigh limit of GLMT might indeed exactly identify with the usual dipole theory of forces. (C) 2021 Optical Society of America
机译:最近一项致力于研究圆对称贝塞尔光束在广义洛伦兹-米理论(GLMT)的瑞利区对点状粒子施加的纵向光学力的工作证实了非标准力(贝塞尔光束中称为轴棱锥力)的存在,这些力似乎无法用传统理论中讨论的散射力和梯度力来表示偶极子力理论的框架。这些结果引出了一个问题:GLMT的瑞利极限和偶极子力理论是一致的,还是不一致?如果是这样的话,必须优先考虑广义洛伦兹-米理论的瑞利极限,因为它提供了一个高度精确的公式。为了找到这个问题的确切答案,对两种框架中施加的光学力进行了数值比较,结果表明,它们的一致性非常精确,精确到小数点后1000位。这导致了这样一种猜测,即GLMT的瑞利极限可能确实与通常的偶极子力理论一致。(2021)美国光学学会

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