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Multichannel probes for polarization-resolved scanning near-field optical microscopy

机译:多通道探头,用于偏振分辨扫描近场光学显微镜

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摘要

We propose and validate a concept of multichannel near-field fiber probe for the collection and discrimination of optical fields of orthogonal polarizations (linear, elliptic, and circular). The system is achieved by connecting to scanning near-field optical microscope fiber tips an optical stage made up of commercial polarizers, fiber couplers, and polarization controllers. Using radially polarized Bessel beams as test objects, we demonstrate the ability of a three-channel fiber tip to simultaneously and independently probe the transverse vector components of the electric field (parallel to the sample surface) and the overall transverse intensity. The polarization ratio of the near-field collection system exceeds 1:1500. The system can be implemented in collection-mode or reflection-mode near-field microscope configurations, with various kinds of probe and light source (of high or low coherence lengths) for a deeper insight of light polarization effects and vector fields at a subwavelength scale.
机译:我们提出并验证了多通道近场光纤探头的概念,该探头用于收集和区分正交偏振(线性,椭圆形和圆形)的光场。该系统是通过将近场光学显微镜光纤尖端连接到由商用偏振器,光纤耦合器和偏振控制器组成的光学平台而实现的。使用径向偏振的贝塞尔光束作为测试对象,我们演示了三通道光纤尖端同时并独立探测电场(平行于样品表面)的横向矢量分量和整体横向强度的能力。近场采集系统的极化率超过1:1500。该系统可以在收集模式或反射模式的近场显微镜配置中实现,具有各种类型的探针和光源(相干长度高或低),可更深入地了解亚波长范围内的光偏振效应和矢量场。

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