A nonlinear optical microscope based on double-clad photonic crystal fibers

L. Fu, X. Gan, M. Gu
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引用次数: 1

Abstract

Nonlinear optical microscopy by using nonlinear optical effects such as two-photon absorption and second harmonic generation (SHG) exhibits advantages of intrinsic sectioning ability, direct imaging of highly polarisable structures, and deep optical penetration. To achieve a compact and miniature microscope, flexible fiber-optic components such as optical fibers and optical fiber couplers are usually integrated into the imaging system to replace complicated bulk optics. More recently, the emergency of photonic crystal fibers (PCF) has been a renaissance of fundamental research and development on optical fibers. Several attractive properties of double-clad PCF, including a large mode area in the core for single-mode delivery and high N.A. in the inner cladding for signal collection, may add a new dimension in the conventional fiber-optic nonlinear microscopy
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基于双包层光子晶体光纤的非线性光学显微镜
利用双光子吸收和二次谐波产生(SHG)等非线性光学效应的非线性光学显微镜具有固有的切片能力、对高偏振结构的直接成像和深光学穿透等优点。为了实现紧凑和微型的显微镜,通常在成像系统中集成柔性光纤元件,如光纤和光纤耦合器,以取代复杂的块状光学元件。近年来,光子晶体光纤(PCF)的兴起是光纤基础研究和发展的复兴。双包层PCF的几个吸引人的特性,包括在核心的大模式面积单模传输和高的内包层的na用于信号收集,可能为传统的光纤非线性显微镜增加一个新的维度
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