Pristinski Denis, Du Henry
Department of Chemical, Biomedical, and Materials Engineering, Stevens Institute of Technology, Hoboken, Castle Point on Hudson, New Jersey 07030, USA.
Opt Lett. 2006 Nov 15;31(22):3246-8. doi: 10.1364/ol.31.003246.
We show that solid-core photonic crystal fiber (PCF) is a promising platform for evanescent-field Raman spectroscopy of low-volume analytes. The Raman peak ratio of a silica core as a background to acetonitrile solution as analyte contained in the air holes maintains a constant value despite varying laser power and fiber length in a set of measurements. The Raman signal from the silica core can be used to eliminate the need to account for the coupling losses. These results demonstrate the feasibility of quantitative measurements using PCF as a Raman platform with silica as an internal reference. In addition, integrated Raman intensity increases with the length of the PCF due to long path length of light.
我们表明,实心光子晶体光纤(PCF)是用于低体积分析物的倏逝场拉曼光谱的一个有前景的平台。在一组测量中,尽管激光功率和光纤长度变化,但作为背景的二氧化硅纤芯与作为空气孔中所含分析物的乙腈溶液的拉曼峰比保持恒定值。来自二氧化硅纤芯的拉曼信号可用于消除考虑耦合损耗的必要性。这些结果证明了使用PCF作为以二氧化硅为内参的拉曼平台进行定量测量的可行性。此外,由于光的长程,集成拉曼强度随PCF的长度增加。