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Molecular orientation sensitive second harmonic microscopy by radially and azimuthally polarized light

机译:分子取向敏感的二次谐波显微镜,通过径向和方位角偏振光

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We demonstrate the possibility to switch the z-polarization component of the illumination in the vicinity of the focus of high-NA objective lenses by applying radially and azimuthally polarized incident light. The influence of the field distribution on nonlinear effects was first investigated by the means of simulations. These were performed for high-NA objective lenses commonly used in nonlinear microscopy. Special attention is paid to the influence of the polarization of the incoming field. For linearly, circularly and radially polarized light a considerable polarization component in z-direction is generated by high NA focusing. Azimuthal polarization is an exceptional case: even for strong focusing no z-component arises. Furthermore, the influence of the input polarization on the intensity contributing to the nonlinear signal generation was computed. No distinct difference between comparable input polarization states was found for chosen thresholds of nonlinear signal generation. Differences in signal generation for radially and azimuthally polarized vortex beams were experimentally evaluated in native collagen tissue (porcine cornea). The findings are in good agreement with the theoretical predictions and display the possibility to probe the molecular orientation along the optical axis of samples with known nonlinear properties. The combination of simulations regarding the nonlinear response of materials and experiments with different sample orientations and present or non present z-polarization could help to increase the understanding of nonlinear signal formation in yet unstudied materials.
机译:我们展示了通过施加径向和方位偏振的入射光在高NA物镜的焦点附近切换照明的z偏振分量的可能性。首先通过仿真的方法研究了场分布对非线性效应的影响。这些是针对通常用于非线性显微镜的高NA物镜进行的。要特别注意入射场极化的影响。对于线性,圆形和径向偏振光,通过高NA聚焦会在z方向上产生相当大的偏振分量。方位极化是一种例外情况:即使进行强聚焦也不会出现z分量。此外,计算了输入极化对有助于非线性信号生成的强度的影响。对于选定的非线性信号生成阈值,在可比较的输入偏振态之间未发现明显差异。在天然胶原组织(猪角膜)中,通过实验评估了径向和方位极化涡旋光束的信号产生差异。这些发现与理论预测非常吻合,并显示了探测具有已知非线性特性的样品沿光轴的分子取向的可能性。关于材料的非线性响应的仿真与具有不同样品方向以及存在或不存在z极化的实验的组合可以帮助增加对尚未研究的材料中非线性信号形成的理解。

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