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Singularities and spectral changes of Gaussian beams focused by a lens with spherical aberration

机译:球面像差透镜聚焦高斯光束的奇异性和光谱变化

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摘要

We address the effect of the truncation parameter and spherical aberration (SA) on the singularity transformation and spectral behavior of the polychromatic Gaussian beams focused by an aperture lens with SA in detail. The numerical,simulation results, based on the derived equations of the intensity and the spectral density, are given. It is found that the axial singularities vanished with the change of the truncated parameter. The intensity and drastic spectral change fade away with an annihilation process of the phase singularities, and the drastic spectral change does not disappear immediately at the moment the phase singularity annihilates. The singularities in the focal region will redistribute with the increment of SA coefficient, some singularities will vanish, some will spilt into two new singularities, and other off-axial singularities will appear and split into two new singularities as well. When SA coefficient changed, we can find that the axial singularities disappear as well with the decreasing value of truncation parameter. These new splitted singularities due to the change of SA coefficient will converge into one singularity again and disappear gradually. (C) 2008 Elsevier Ltd. All rights reserved.
机译:我们详细讨论了截断参数和球差(SA)对具有SA的光圈透镜聚焦的多色高斯光束的奇异变换和光谱特性的影响。基于强度和光谱密度的推导方程,给出了数值模拟结果。发现随着截断参数的变化,轴向奇异性消失了。强度和剧烈的光谱变化随着相位奇点的an灭过程而消失,并且剧烈的光谱变化在相位奇点消失时不会立即消失。焦点区域中的奇点将随着SA系数的增加而重新分布,一些奇点将消失,一些奇点将溢出为两个新的奇点,其他轴外奇点将出现并分裂为两个新的奇点。当SA系数变化时,我们可以发现轴向奇异性也随着截断参数的减小而消失。由于SA系数的变化,这些新的分裂奇点将再次收敛为一个奇点并逐渐消失。 (C)2008 Elsevier Ltd.保留所有权利。

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