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Fabrication of corrugated probes for scanning near-field optical microscopy

机译:用于扫描近场光学显微镜的波纹探针的制造

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We present a method of fabricating aperture tapered-fiber metal-coated SNOM probes with a corrugated core surface which assures efficient photon-to-plasmon conversion and thus high energy throughput. High energy throughput allows for a small apex aperture and high resolution. The procedure consists of recording of Bragg grating in the to-be-tapered part of a Ge-doped silica fiber and chemical etching with the Turner method. Bragg gratings are recorded with UV light through nearly sinusoidal phase masks of chosen lattice constants. The refractive index contrast in the Bragg grating differentiates the etch rate of the Ge-doped hydrogenated fiber core in exposed and unexposed parts by about 100 nm/min at room temperature.
机译:我们提出了一种制造具有波纹芯表面的孔径锥形纤维金属涂层SNOM探针的方法,该探针可确保有效的光子到等离激元转换并因此获得高能量通过量。高能量通量允许较小的顶部孔径和高分辨率。该过程包括在掺Ge的石英纤维的待锥化部分中记录布拉格光栅,并使用Turner方法进行化学蚀刻。布拉格光栅通过选定晶格常数的近似正弦相位掩膜用紫外线记录。布拉格光栅中的折射率对比使室温下裸露和未裸露部分中掺Ge的氢化纤维芯的蚀刻速率相差约100 nm / min。

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