Department of Physics, University of Bath, Bath, UK.
School of Chemistry, University of Edinburgh, Edinburgh, UK.
J Biophotonics. 2019 Mar;12(3):e201800239. doi: 10.1002/jbio.201800239. Epub 2018 Nov 19.
Measuring Raman spectra through an optical fibre is usually complicated by the high intrinsic Raman scatter of the fibre material. Common solutions such as the use of multiple fibres and distal optics are complex and bulky. We demonstrate the use of single novel hollow-core negative-curvature fibres (NCFs) for Raman and surface-enhanced Raman spectroscopy (SERS) sensing using no distal optics. The background Raman emission from the silica in the NCF was at least 1000× smaller than in a conventional solid fibre, while maintaining the same collection efficiency. We transmitted pump light from a 785-nm laser through the NCF, and we collected back the weak Raman spectra of different distal samples, demonstrating the fibre probe can be used for measurements of weak Raman and SERS signals that would otherwise overlap spectrally with the silica background. The lack of distal optics and consequent small probe diameter (<0.25 mm) enable applications that were not previously possible.
通过光纤测量拉曼光谱通常会受到光纤材料的高本征拉曼散射的影响。常见的解决方案,如使用多根光纤和远端光学器件,既复杂又庞大。我们演示了使用新型单根中空负曲率光纤(NCF)进行拉曼和表面增强拉曼光谱(SERS)传感,无需使用远端光学器件。NCF 中的二氧化硅的背景拉曼发射比传统固体光纤至少小 1000 倍,同时保持相同的收集效率。我们将来自 785nm 激光的泵浦光通过 NCF 传输,并收集不同远端样品的弱拉曼光谱,证明光纤探头可用于测量弱拉曼和 SERS 信号,否则这些信号会与二氧化硅背景的光谱重叠。缺少远端光学器件和相应的小探头直径(<0.25 毫米)使得以前不可能实现的应用成为可能。