Title :
Ultrahigh Enhancement Factor by Using a Silver Nanoshell With a Gain Core Above a Silver Substrate for Surface-Enhanced Raman Scattering at the Single-Molecule Level
Author :
Jun Song ; Jinhong Xian ; Minghuai Yu ; Dong Wang ; Shuai Ye ; Hanben Niu ; Xiao Peng ; Junle Qu
Author_Institution :
Key Lab. of Optoelectron. Devices & Syst., Shenzhen Univ., Shenzhen, China
Abstract :
Single-molecule surface-enhanced Raman scattering (SERS) has been extensively studied over the past decade. In this paper, we propose a novel method to obtain ultrahigh enhancement of local electric fields by using a silver nanoshell with a gain core above a silver substrate. Numerical results show that an ultrahigh enhancement factor of the local electric field on the order of 105-106 and a SERS enhancement factor on the order of 1020-1025 can be obtained with the present system. The SERS enhancement factor is five orders of magnitude greater than the highest theoretical value reported for SERS applications at the single-molecule level. In addition, we use the finite-element method to analyze in detail the influences of the gain coefficient of the gain core and the other structure parameters on the enhancement factor.
Keywords :
finite element analysis; nanostructured materials; silver; surface enhanced Raman scattering; Ag; SERS enhancement factor; finite-element method; gain coefficient; gain core; local electric fields; silver nanoshell; silver substrate; single-molecule level; surface-enhanced Raman scattering; ultrahigh enhancement factor; Bandwidth; Electric fields; Plasmons; Raman scattering; Refractive index; Silver; Substrates; Plasmonics; Surface-enhanced Raman scattering; gain material; local field enhancement; surface-enhanced Raman scattering;
Journal_Title :
Photonics Journal, IEEE
DOI :
10.1109/JPHOT.2015.2481599