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Corrugated SNOM probe with enhanced energy throughput

机译:波纹SNOM探头具有更高的能量通量

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In a previous paper we proposed a modification of metal-coated tapered-fibre aperture probes for scanning near-field optical microscopes (SNOMs). The modification consists in radial corrugations of the metal-dielectric interface oriented inward the core. Their purpose is to facilitate the excitation of surface plasmons, which increase the transport of energy beyond the cut-off diameter and radiate a quasi-dipolar field from the probe output rim. An increase in energy output allows for reduction of the apex diameter, which is the main factor determining the resolution of the microscope. In two-dimensional finite-difference time-domain (FDTD) simulations we analyse the performance of the new type of SNOM probe. We admit, however, that the two-dimensional approximation gives better results than expected from exact three-dimensional ones. Nevertheless, optimisation of enhanced energy throughput in corrugated probes should lead to at least twice better resolution with the same sensitivity of detectors available nowadays.
机译:在先前的论文中,我们提出了一种用于扫描近场光学显微镜(SNOM)的金属涂层锥形光纤孔径探头的改进型。修改之处在于,朝向芯部的金属-电介质界面的径向波纹。它们的目的是促进表面等离激元的激发,这些激子增加了能量的传输,超出了截止直径,并从探针的输出边缘辐射出了准偶极场。能量输出的增加可以减小顶点直径,这是决定显微镜分辨率的主要因素。在二维有限差分时域(FDTD)模拟中,我们分析了新型SNOM探针的性能。但是,我们承认,二维近似比精确的三维近似提供了更好的结果。然而,优化波纹电极中能量通量的提高应导致分辨率至少提高两倍,并且具有当今可用的相同灵敏度的探测器。

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