Contact-type endoscope SERS probe, and related methods
A contact-type endoscope surface enhanced Raman scattering (SERS) probe includes a gradient-index (GRIN) lens, a transparent substrate adhered to the GRIN lens, and a rough metallic layer adhered to an opposite side of the transparent substrate from the GRIN lens. The GRIN lens focuses light from a Raman spectrometer onto the rough metallic layer, and the rough metallic layer is positioned at the distal end of the contact-type endoscope SERS probe.
1. A system for contact-type endoscope surface enhanced Raman scattering (SERS) comprising:
a Raman spectrometer;
a probe having a proximal end and a distal end, comprising:
a gradient-index (GRIN) lens; and
a rough metallic layer optically connected to said GRIN lens; and
an articulated arm comprising a plurality of mirrors for reflecting an illumination light from said Raman spectrometer to said probe, and for reflecting a scattered light from said probe to said Raman spectrometer,
wherein said rough metallic layer is configured to contact a sample such that the rough metallic layer is positioned between the GRIN lens and the sample; and
wherein said GRIN lens focuses said illumination light from said Raman spectrometer onto said rough metallic layer.
2. A system for contact-type endoscope SERS according to claim 1 , wherein said rough metallic layer is positioned at said distal end of said probe.
3. A system for contact-type endoscope SERS according to claim 1 , wherein said Raman spectrometer further comprises a light source for providing said illumination light, wherein said light source is a HeNe laser source.
4. A system for contact-type endoscope SERS according to claim 1 ,
further comprising a transparent substrate adhered to said GRIN lens between said GRIN lens and said rough metallic layer.
5. A system for contact-type endoscope SERS according to claim 1 ,
further comprising a transparent substrate adhered to said rough metallic layer between said GRIN lens and said rough metallic layer.