Surface plasmon resonance based sensing of different chemical and biological samples using admittance loci method

被引:13
作者
Brahmachari K. [1 ]
Ghosh S. [1 ]
Ray M. [1 ]
机构
[1] Department of Applied Optics and Photonics, University of Calcutta, Kolkata 700 009, 92, Acharya Prafulla Chandra Road
关键词
Admittance loci method; multilayer structure; surface plasmon resonance; thin film;
D O I
10.1007/s13320-012-0062-7
中图分类号
学科分类号
摘要
The admittance loci method plays an important role in the design of multilayer thin film structures. In this paper, admittance loci method has been explored theoretically for sensing of various chemical and biological samples based on surface plasmon resonance (SPR) phenomenon. A dielectric multilayer structure consisting of a Boro silicate glass (BSG) substrate, calcium fluoride (CaF2) and zirconium dioxide (ZrO2) along with different dielectric layers has been investigated. Moreover, admittance loci as well as SPR curves of metal-dielectric multilayer structure consisting of the BSG substrate, gold metal film and various dielectric samples has been simulated in MATLAB environment. To validate the proposed simulation results, calibration curves have also been provided. © 2012 The Author(s).
引用
收藏
页码:159 / 167
页数:8
相关论文
共 20 条
  • [11] Ghosh S., Brahmachari K., Ray M., Experimental investigation of surface plasmon resonance using a chemically deposited silver film on a tapered cylindrical glass rod, Presented at the International Conference on Specialty Glass & Optical Fiber: Materials, Technology & Devices, (2011)
  • [12] Ghosh S., Brahmachari K., Ray M., Experimental investigation of surface plasmon resonance using tapered cylindrical light guides with metal-dielectric interface, Journal of Sensor Technology, 2, 1, pp. 48-54, (2012)
  • [13] Neninger G.G., Tobiska P., Homola J., Yee S.S., Long-range surface plasmons for high-resolution surface plasmon resonance sensors, Sensors and Actuators B: Chemical, 74, 1, pp. 145-151, (2001)
  • [14] Salamon Z., Macleod H., Tollin G., Coupled plasmon-waveguide resonators: A new spectroscopic tool for probing proteolipid film structure and properties, Biophysical Journal, 73, 5, pp. 2791-2797, (1997)
  • [15] Bera M., Ray M., Coupled plasmonic assisted progressive multiple resonance for dielectric material characterization, Optical Engineering, 50, 10, pp. 103801-103808, (2011)
  • [16] Macleod H.A., Thin-Film Optical Filters, (2010)
  • [17] Lin C.W., Chen K.P., Su M.C., Lee C.K., Yang C.C., Bio-plasmonics: Nano/micro structure of surface plasmon resonance devices for biomedicine, Optical and Quantum Electronics, 37, 13-15, pp. 1423-1437, (2005)
  • [18] Lin C.W., Chen K.P., Su M.C., Hsiao T.C., Lee S.S., Lin S., Et al., Admittance loci design method for multilayer surface plasmon resonance devices, Sensors and Actuators B: Chemical, 117, 1, pp. 219-229, (2006)
  • [19] Brahmachari K., Ghosh S., Ray M., Application of admittance loci method in surface plasmon resonance technology for sensing of different chemical and biological samples, International Conference on Specialty Glass & Optical Fiber: Materials, Technology & Devices, (2011)
  • [20] Brahmachari K., Ghosh S., Ray M., Substrate dependence of surface plasmon resonance sensor with a multilayer structure using admittance loci method, Proc. Of 2nd International Conference on Trends in Optics and Photonics, pp. 402-407, (2011)