首页> 外文会议>International Conference on Transparent Optical Networks;ICTON '09 >Superfocusing on a dielectric-metal-dielectric apertureless scanning near-field optical microscope probe
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Superfocusing on a dielectric-metal-dielectric apertureless scanning near-field optical microscope probe

机译:超级专注于介电-金属-介电的无孔扫描近场光学显微镜探头

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Scanning near-field optical microscopy (SNOM) is an important tool for measurements of nanostructures as well as chemical and biosensing applications. A key parameter defining its usefulness is its resolution which depends of the geometrical size of SNOM probes and signal throughput in aperture tips and signal enhancement in apertureless ones. We analyse nanofocusing properties of an apertureless probe in the form of a dielectric tapered fiber with metal apertureless coating and a novel dielectric nanocladding. The new outer nanocladding gives an ability to tune resonant enhancement wavelengths within a wide spectral range by choice of cladding permittivity. The investigation is performed using body-of-revolution finite-difference time-domain simulations. A silica core of diameter decreasing from 2 mum to 5 nm at the apex is covered with a 40 nm thick Ag layer and has a 5 nm dielectric cladding. Internal illumination with a radially polarized Laguerre-Gauss beam guided in fiber is used. We find that with an increase of the refractive index of nanocladdings the maximum enhancement occurs for increasingly longer wavelengths.
机译:扫描近场光学显微镜(SNOM)是测量纳米结构以及化学和生物传感应用的重要工具。定义其有效性的关键参数是其分辨率,该分辨率取决于SNOM探针的几何尺寸以及孔径尖端的信号通过量和无孔径探针的信号增强能力。我们分析具有金属无孔涂层和新型电介质纳米包层的电介质锥形光纤形式的无孔探针的纳米聚焦特性。通过选择包层介电常数,新的外部纳米包层能够在宽光谱范围内调谐共振增强波长。该研究是使用旋转体有限差分时域模拟进行的。在顶点处直径从2微米减小到5纳米的二氧化硅核被40纳米厚的Ag层覆盖,并具有5​​纳米的电介质包层。使用在光纤中引导的径向偏振Laguerre-Gauss光束进行内部照明。我们发现,随着纳米包层折射率的增加,对于越来越长的波长会出现最大的增强。

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