TY - JOUR
T1 - Grating-assisted coupling enhancing plasmonic tip nanofocusing illuminated via radial vector beam
AU - Lu, Fanfan
AU - Zhang, Wending
AU - Zhang, Jiachen
AU - Liu, Min
AU - Zhang, Lu
AU - Xue, Tianyang
AU - Meng, Chao
AU - Gao, Feng
AU - Mei, Ting
AU - Zhao, Jianlin
N1 - Publisher Copyright:
© 2019 Wending Zhang, Ting Mei et al.,
PY - 2012/2/1
Y1 - 2012/2/1
N2 - Tip-enhanced Raman spectroscopy (TERS) is a very useful method to achieve label-free and super-resolution imaging, and the plasmonic tip nanofocusing plays a decisive role for TERS performance. Here, we present a method to enhance the nanofocusing characteristic of a plasmonic tip integrated in a grating near the tip apex. Simulation results show that the grating near the tip apex can significantly improve the electric field intensity of the nanofocusing field compared with a conventional bare tip, under axial excitation of a tightly focused radial vector beam. The electric field enhancement characteristic is quantified in relation with the groove number of grating, excitation wavelength, period of grating, and numerical aperture of the micro-objective (MO). These simulation results could be a good reference to fabricate a plasmonic tip for TERS applications, which is an effective way to promote the development of tip-enhanced near-field optical microscopy.
AB - Tip-enhanced Raman spectroscopy (TERS) is a very useful method to achieve label-free and super-resolution imaging, and the plasmonic tip nanofocusing plays a decisive role for TERS performance. Here, we present a method to enhance the nanofocusing characteristic of a plasmonic tip integrated in a grating near the tip apex. Simulation results show that the grating near the tip apex can significantly improve the electric field intensity of the nanofocusing field compared with a conventional bare tip, under axial excitation of a tightly focused radial vector beam. The electric field enhancement characteristic is quantified in relation with the groove number of grating, excitation wavelength, period of grating, and numerical aperture of the micro-objective (MO). These simulation results could be a good reference to fabricate a plasmonic tip for TERS applications, which is an effective way to promote the development of tip-enhanced near-field optical microscopy.
KW - plasmonic tip nanofocusing
KW - radial vector beam
KW - surface plasmon polariton
KW - tip-enhanced Raman spectroscopy
UR - http://www.scopus.com/inward/record.url?scp=85075179573&partnerID=8YFLogxK
U2 - 10.1515/nanoph-2019-0329
DO - 10.1515/nanoph-2019-0329
M3 - 文章
AN - SCOPUS:85075179573
SN - 2192-8614
VL - 8
SP - 2303
EP - 2311
JO - Nanophotonics
JF - Nanophotonics
IS - 12
ER -