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基于表面张力和毛细作用的化学蚀刻法制备用于近场光学显微镜的光纤纳米探针

Optical fiber nanoprobe preparation for near-field optical microscopy by chemical etching under surface tension and capillary action.

作者信息

Mondal Samir K, Mitra Anupam, Singh Nahar, Sarkar S N, Kapur Pawan

机构信息

Central Scientific Instruments Organisation, Chandigarh, Sec-30C, India.

出版信息

Opt Express. 2009 Oct 26;17(22):19470-5. doi: 10.1364/OE.17.019470.

Abstract

We propose a technique of chemical etching for fabrication of near perfect optical fiber nanoprobe (NNP). It uses photosensitive single mode optical fiber to etch in hydro fluoric (HF) acid solution. The difference in etching rate for cladding and photosensitive core in HF acid solution creates capillary ring along core-cladding boundary under a given condition. The capillary ring is filled with acid solution due to surface tension and capillary action. Finally it creates near perfect symmetric tip at the apex of the fiber as the height of the acid level in capillary ring decreases while width of the ring increases with continuous etching. Typical tip features are short taper length (approximately 4 microm), large cone angle (approximately 38 degrees ), and small probe tip dimension (<100 nm). A finite difference time domain (FDTD) analysis is also presented to compare near field optics of the NNP with conventional nanoprobe (CNP). The probe may be ideal for near field optical imaging and sensor applications.

摘要

我们提出了一种用于制造近乎完美的光纤纳米探针(NNP)的化学蚀刻技术。该技术使用光敏单模光纤在氢氟酸(HF)溶液中进行蚀刻。在HF酸溶液中,包层和光敏纤芯蚀刻速率的差异在给定条件下会沿着纤芯 - 包层边界形成毛细管环。由于表面张力和毛细作用,毛细管环中充满了酸溶液。随着蚀刻的持续进行,毛细管环中酸液高度降低,环的宽度增加,最终在光纤顶端形成近乎完美的对称尖端。典型的尖端特征包括短锥长(约4微米)、大锥角(约38度)和小探针尖端尺寸(<100纳米)。还进行了时域有限差分(FDTD)分析,以比较NNP与传统纳米探针(CNP)的近场光学特性。该探针可能非常适用于近场光学成像和传感器应用。

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