Surface Plasmon Resonance Based Sensing of Aqueous Solutions Using Spectral Interferometry

被引:1
作者
Lunacek, J. [1 ,2 ]
Hlubina, P. [1 ,2 ]
Ciprian, D. [1 ,2 ]
Duliakova, M. [1 ]
Lunackova, M. [3 ]
机构
[1] VSB Tech Univ Ostrava, Dept Phys, 17 Listopadu 15, Ostrava 70833, Czech Republic
[2] VSB Tech Univ Ostrava, Reg Mat Sci & Technol Ctr, 17 Listopadu 15, Ostrava 70833, Czech Republic
[3] VSB Tech Univ Ostrava, Dept Math & Descript Geometry, 17 Listopadu 15, Ostrava 70833, Czech Republic
关键词
PHASE;
D O I
10.12693/APhysPolA.129.23
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
This paper deals with a polarimetric setup to measure the refractive index change of aqueous solutions. The experimental method is based on the surface plasmon resonance effect in the Kretschmann configuration combined with spectral interferometry. In order to retrieve surface plasmon resonance-induced differential phase change, a windowed Fourier transform was adopted to extract the phases from two spectral interferograms, one corresponding to the reference material (air) and the second to the analyte (NaCl aqueous solution). The shift of phase curve is related to the analyte refractive index change. The refractive index of the NaCl aqueous solutions (0, 2 and 5 percent) was measured by the Abbe refractometer at a wavelength of 589.3 nm and compared with theoretical one, calculated by the Lorentz-Lorenz equation. An excellent agreement between the values was confirmed. The resonance wavelengths as extremes of the surface plasmon resonance-induced differential phase changes retrieved from spectral interference signals were compared with the resonance wavelengths determined from spectral reflectance measurements. A good agreement between the values was confirmed.
引用
收藏
页码:23 / 27
页数:5
相关论文
共 50 条
[21]   Au/Fe/Au multilayer transducers for magneto-optic surface plasmon resonance sensing [J].
Regatos, D. ;
Farina, D. ;
Calle, A. ;
Cebollada, A. ;
Sepulveda, B. ;
Armelles, G. ;
Lechuga, L. M. .
JOURNAL OF APPLIED PHYSICS, 2010, 108 (05)
[22]   Measurement of the dispersion of a liquid analyte using surface plasmon resonance: a theoretical approach [J].
Chylek, J. ;
Bezdekova, I ;
Ciprian, D. ;
Hlubina, P. .
OPTICAL SENSING AND DETECTION V, 2018, 10680
[23]   On-line surface inspection using cylindrical lens-based spectral domain low-coherence interferometry [J].
Tang, Dawei ;
Gao, Feng ;
Jiang, X. .
APPLIED OPTICS, 2014, 53 (24) :5510-5516
[24]   Tuning the Fano Resonance Between Localized and Propagating Surface Plasmon Resonances for Refractive Index Sensing Applications [J].
Lodewijks, Kristof ;
Ryken, Jef ;
Van Roy, Willem ;
Borghs, Gustaaf ;
Lagae, Liesbet ;
Van Dorpe, Pol .
PLASMONICS, 2013, 8 (03) :1379-1385
[25]   Analysis of Silicon Based Surface Plasmon Resonance Sensors with Different Amino Acids [J].
Sharmila Ghosh ;
Mina Ray .
Silicon, 2015, 7 :313-322
[26]   Analysis of Silicon Based Surface Plasmon Resonance Sensors with Different Amino Acids [J].
Ghosh, Sharmila ;
Ray, Mina .
SILICON, 2015, 7 (04) :313-322
[27]   Anti-integrin and integrin detection using the heat dissipation of surface plasmon resonance [J].
Huang, Hao-Ting ;
Huang, Chen-Yu ;
Ger, Tzong-Rong ;
Wei, Zung-Hang .
APPLIED PHYSICS LETTERS, 2013, 102 (11)
[28]   Ultrasensitive Surface Plasmon Resonance Biosensor Using Blue Phosphorus-Graphene Architecture [J].
Li, Keyi ;
Li, Lintong ;
Xu, Nanlin ;
Peng, Xiao ;
Zhou, Yingxin ;
Yuan, Yufeng ;
Song, Jun ;
Qu, Junle .
SENSORS, 2020, 20 (11) :1-13
[29]   Phase-sensitive surface plasmon resonance biosensor using the photoelastic modulation technique [J].
Ho, HP ;
Law, WC ;
Wu, SY ;
Liu, XH ;
Wong, SP ;
Lin, CL ;
Kong, SK .
SENSORS AND ACTUATORS B-CHEMICAL, 2006, 114 (01) :80-84
[30]   Ultrasensitive and rapid detection of malaria using graphene-enhanced surface plasmon resonance [J].
Wu, Fan ;
Singh, Jashan ;
Thomas, Philip A. ;
Ge, Qi ;
Kravets, Vasyl G. ;
Day, Philip J. ;
Grigorenko, Alexander N. .
2D MATERIALS, 2020, 7 (04)