Wang Ling, Choi Hae Young, Jung Yongmin, Lee Byeong Ha, Kim Kwang-Taek
Department of Information and Communications, Gwangju Institute of Science and Technology, 1 Oryong-dong, Buk-gu, Gwangju 500-712, South Korea.
Opt Express. 2007 Dec 24;15(26):17681-9. doi: 10.1364/oe.15.017681.
We report an optical probe based on a single double-clad fiber (DCF), which is suitable for fluorescence spectroscopy. The excitation light is delivered through the small diameter core of the DCF and the excited fluorescence light is collected by the large diameter inner cladding of the same fiber. To retrieve the signal beam from the inner cladding, we utilize a DCF coupler that couples only the light beams in the inner claddings of two different pieces of DCF. It was found that the separation of the channel for the excited beam from the channel for the excitation beam in the same piece of fiber could diminish the autofluorescence background noise generated by the fiber itself, while maintaining all the benefits of a single-fiber probe system. The usefulness of the DCF probe and the performance of the DCF coupler are then reported by presenting the fluorescence spectrum of a fresh gingko leaf and comparing it with the spectrum taken with conventional methods. The fabrication process of the DCF fiber and the inner cladding mode coupler for it are also presented.
我们报道了一种基于单根双包层光纤(DCF)的光学探头,它适用于荧光光谱学。激发光通过DCF的小直径纤芯传输,而激发的荧光则由同一根光纤的大直径内包层收集。为了从内包层中提取信号光束,我们使用了一个DCF耦合器,它只耦合两根不同DCF内包层中的光束。研究发现,在同一根光纤中,将激发光束通道与激发光束通道分离,可以减少光纤自身产生的自发荧光背景噪声,同时保留单光纤探头系统的所有优点。通过展示新鲜银杏叶的荧光光谱并将其与传统方法获取的光谱进行比较,报道了DCF探头的实用性和DCF耦合器的性能。还介绍了DCF光纤及其内包层模式耦合器的制造工艺。