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用矢量复射线模型与物理光学相结合的方法对艾里理论进行再探讨。

Airy theory revisited with the method combining vectorial complex ray model and physical optics.

作者信息

Zhang Ce, Rozé Claude, Ren Kuan Fang

出版信息

Opt Lett. 2022 May 1;47(9):2149-2152. doi: 10.1364/OL.455940.

Abstract

Airy published his theory in the 1830s to remedy the problem of infinite intensity in the rainbow angles of a spherical droplet predicted by geometrical optics. This theory has been studied by mathematicians and physicists since then from different points of view. In what concerns the scattering diagram around the rainbow angles, Airy theory has been improved by researchers in order to predict correctly the intensity of the supernumerary bows. However, it is known that the positions and the intensities of the supernumerary bows predicted by Airy theory differ from those of rigorous Debye theory with increasing order p and the scattering angles from the rainbow angle. In the present Letter, we will show that this discrepancy is caused by the approximations in Airy theory and can be revised by combining the vectorial complex ray model and physical optics (PO). The former permits us to calculate rigorously the amplitudes and phases of all rays and predicts precisely the scattering pattern except for the main bows. The combination with PO predicts very precisely all the supernumerary bows for both perpendicular and parallel polarization. This method can be applied directly to the light scattering of non-spherical particles with smooth surfaces.

摘要

艾里在19世纪30年代发表了他的理论,以解决几何光学预测的球形液滴彩虹角处强度无穷大的问题。从那时起,数学家和物理学家从不同角度对该理论进行了研究。关于彩虹角周围的散射图,研究人员对艾里理论进行了改进,以便正确预测超numerary弓的强度。然而,众所周知,随着阶数p和散射角与彩虹角的增加,艾里理论预测的超numerary弓的位置和强度与严格的德拜理论不同。在本信中,我们将表明这种差异是由艾里理论中的近似引起的,可以通过结合矢量复射线模型和物理光学(PO)来修正。前者使我们能够严格计算所有光线的振幅和相位,并精确预测除主弓之外的散射图案。与PO的结合非常精确地预测了垂直和平行极化的所有超numerary弓。该方法可直接应用于具有光滑表面的非球形粒子的光散射。

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