Title :
Surface Plasmon Resonance Photonic Crystal Fiber Biosensor: A Practical Sensing Approach
Author :
Rifat, A.A. ; Mahdiraji, Ghafour Amouzad ; Sua, Y.M. ; Shee, Y.G. ; Ahmed, Rajib ; Chow, Desmond M. ; Mahamd Adikan, F.R.
Author_Institution :
Dept. of Electr. Eng., Univ. of Malaya, Kuala Lumpur, Malaysia
Abstract :
We propose a simple, two rings, hexagonal lattice photonic crystal fiber biosensor using surface plasmon resonance phenomenon. An active plasmonic gold layer and the analyte (sample) are placed outside the fiber structure instead of inside the air-holes, which will result in a simpler and straight forward fabrication process. The proposed sensor exhibits birefringent behavior that enhances its sensitivity. Numerical investigation of the guiding properties and sensing performance are conducted by finite element method. Using wavelength and amplitude interrogation methods, the proposed sensor could provide maximum sensitivity of 4000 nm/RIU and 320 RIU-1, respectively. The resolutions of the sensor are 2.5 × 10-5 and 3.125 × 10-5 RIU for wavelength and amplitude interrogation modes. The proposed sensor design shows promising results that could be used in biological and biochemical analytes detection.
Keywords :
biochemistry; biosensors; chemical sensors; fibre optic sensors; finite element analysis; gold; optical design techniques; optical fabrication; photonic crystals; surface plasmon resonance; active plasmonic gold layer; air-holes; amplitude interrogation methods; biochemical analytes detection; biological analytes detection; birefringent behavior; finite element method; guiding properties; hexagonal lattice photonic crystal fiber biosensor; optical fabrication; sensitivity; sensor design; surface plasmon resonance; wavelength interrogation methods; Biosensors; Gold; Optical fiber sensors; Optical surface waves; Photonic crystal fibers; Plasmons; Photonic crystal fiber; optical fiber sensors; surface plasmon resonance;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2015.2432812