New Horizons of Near-field Optical Microscopy

Kyoung-Duck Park
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Abstract

Structure, functions, dynamics, and interactions are the basic properties to systematically understand physical systems existing in nature. In particular, there have been many scientific adventures to understand optical properties of materials and light-matter interactions, yet in the classical regime at the microscale due to the diffraction-limited optical resolution. Near-field optical microscopy enables to probe them at the nanoscale and even induces light-matter interactions in a reversible fashion. In this article, we introduce the fundamental concept of various types of near-field microscopy and several applications studies reported recently. Furthermore, we provide several new directions of nano-spectroscopy and -imaging based on tip-enhanced approach, which have not been thought in the near-field optics community before.
近场光学显微镜的新视野
结构、功能、动力学和相互作用是系统地理解自然界中存在的物理系统的基本属性。特别是,由于衍射有限的光学分辨率,在微观尺度的经典制度下,已经有许多科学冒险来理解材料的光学性质和光物质相互作用。近场光学显微镜可以在纳米尺度上探测它们,甚至可以以可逆的方式诱导光-物质相互作用。本文介绍了近场显微镜的基本概念和近年来的一些应用研究报道。此外,我们还提出了基于尖端增强方法的纳米光谱学和成像的几个新方向,这些方向在近场光学学界以前没有被考虑过。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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