| Literature DB >> 30423922 |
Fanfan Lu1, Tengxiang Huang2, Lei Han3, Haisheng Su4, Heng Wang5, Min Liu6, Wending Zhang7, Xiang Wang8, Ting Mei9.
Abstract
We investigated tip-enhanced Raman spectra excited by high-order fiber vector beams. Theoretical analysis shows that the high-order fiber vector beams have stronger longitudinal electric field components than linearly polarized light under tight focusing conditions. By introducing the high-order fiber vector beams and the linearly polarized beam from a fiber vector beam generator based on an electrically-controlled acoustically-induced fiber grating into a top-illumination tip-enhanced Raman spectroscopy (TERS) setup, the tip-enhanced Raman signal produced by the high-order fiber vector beams was 1.6 times as strong as that produced by the linearly polarized light. This result suggests a new type of efficient excitation light beams for TERS.Entities:
Keywords: fiber vector beam; field enhancement; tip-enhanced Raman spectroscopy
Year: 2018 PMID: 30423922 PMCID: PMC6263471 DOI: 10.3390/s18113841
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1(a–d) Modal intensity distributions of and modes with arrows denoting the polarization directions; (e,f) calculated longitudinal electric field components of and modes under condition of tight focusing.
Figure 2(a) Experiment configuration of tip-enhanced Raman spectroscopy (TERS) excited by the high-order fiber vector beams. Inset: setup for the high-order fiber vector beam generator based on electrically-controlled acoustically-induced fiber grating; (b) partial enlarged detail of the metallic tip and sample; (c) chemical structure of the 4-PBT (4-thiol-4’-(4-pyridine)biphenyl).
Figure 3(a,b) Images of and modes taken by an charge coupled device (CCD) in absence of a polarizer; (a,b) Images of and modes taken by a CCD in absence of a polarizer; (a–a,b–b) Images of and modes in presence of polarizer at different polarization orientations. The image sizes are 2.5 mm × 2.5 mm.
Figure 4Tip-enhanced Raman spectra of 4-PBT with different excitation beams, (a) and ; (b) and .