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Sub millimetre flexible fibre probe for background and fluorescence free Raman spectroscopy
Authors:Stephanos Yerolatsitis  András Kufcsák  Katjana Ehrlich  Harry A. C. Wood  Susan Fernandes  Tom Quinn  Vikki Young  Irene Young  Katie Hamilton  Ahsan R. Akram  Robert R. Thomson  Keith Finlayson  Kevin Dhaliwal  James M. Stone
Affiliation:1. Department of Physics, University of Bath, Bath, UK;2. Translational Healthcare Technologies Team, Centre for Inflammation Research, Queen's Medical Research Institute, University of Edinburgh, Edinburgh, UK;3. Translational Healthcare Technologies Team, Centre for Inflammation Research, Queen's Medical Research Institute, University of Edinburgh, Edinburgh, UK

Scottish Universities Physics Alliance (SUPA), Institute of Photonics and Quantum Sciences, Heriot-Watt University, Edinburgh, UK;4. Scottish Universities Physics Alliance (SUPA), Institute of Photonics and Quantum Sciences, Heriot-Watt University, Edinburgh, UK

Abstract:Using the shifted-excitation Raman difference spectroscopy technique and an optical fibre featuring a negative curvature excitation core and a coaxial ring of high numerical aperture collection cores, we have developed a portable, background and fluorescence free, endoscopic Raman probe. The probe consists of a single fibre with a diameter of less than 0.25 mm packaged in a sub-millimetre tubing, making it compatible with standard bronchoscopes. The Raman excitation light in the fibre is guided in air and therefore interacts little with silica, enabling an almost background free transmission of the excitation light. In addition, we used the shifted-excitation Raman difference spectroscopy technique and a tunable 785 nm laser to separate the fluorescence and the Raman spectrum from highly fluorescent samples, demonstrating the suitability of the probe for biomedical applications. Using this probe we also acquired fluorescence free human lung tissue data.image
Keywords:hollow-core fibre  Raman fibre probe  Raman spectroscopy  SERDS
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