Title :
Simulation and Analysis of a Sub-Wavelength Grating Based Multilayer Surface Plasmon Resonance Biosensor
Author :
Islam, Md Shariful ; Kouzani, Abbas Z.
Author_Institution :
Sch. of Eng., Deakin Univ., Geelong, VIC, Australia
Abstract :
This paper presents a subwavelength grating based multilayer surface plasmon resonance biosensor (SPRB) which includes a periodic array of subwavelength grating on top of a layer of graphene sheet in the biosensor. The proposed biosensor is named grating-graphene SPRB (GG-SPRB). The aim of the proposed multilayer structure is to improve the sensitivity of the SPRB through monitoring of the biomolecular interactions of DNA hybridization. Significant sensitivity improvement is obtained for the GG-SPRB compared with the conventional SPRB. The result of the numerical investigation of the GG-SPRB is presented and compared with a theoretically developed multilayer matrix formalism, and a good agreement has been observed. In addition, an optimization of the grating dimensions including volume factor, grating depth, grating angle, grating period, and grating geometry (e.g., rectangular, sinusoidal and triangular) is presented. The outcome of the investigation presented in this paper identifies desired functioning conditions corresponding to the best design parameters for the GG-SPRB.
Keywords :
DNA; biosensors; graphene; molecular biophysics; multilayers; sensitivity; surface plasmon resonance; C; DNA hybridization; biomolecular interaction monitoring; graphene sheet layer; grating angle; grating depth; grating dimension optimization; grating period; periodic array; rectangular grating geometry; sensitivity; sinusoidal grating geometry; subwavelength grating based multilayer surface plasmon resonance biosensor; triangular grating geometry; volume factor; Dielectrics; Gold; Graphene; Gratings; Nonhomogeneous media; Plasmons; Sensitivity; Biosensor; S- parameter; grating; sensitivity enhancement; surface plasmon resonance;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2013.2249494