Title :
Design of Photonic Crystal-Based Biosensor for Detection of Glucose Concentration in Urine
Author :
Sharma, Parmanand ; Sharan, Preeta
Author_Institution :
Dept. of Electron. & Commun. Eng., Jain Univ., Bangalore, India
Abstract :
In this paper, we have demonstrated and designed a 2D photonic crystal-based biosensor with line defect, which can detect glucose concentration in urine. Simulation and analysis have been done in order to detect glucose concentration in normal urine (0-15 mg/dL), urine with 0.625, 1.25, 2.5, 5, and 10 gm/dL of glucose concentration in the wavelength range of 1530-1565 nm. Finite-difference time-domain method has been used for the analysis. Massachusetts Institute of Technology electromagnetic equation propagation and MIT photonic bands simulation tools have been used for modeling and designing of photonic crystal, and IPKISS software framework has been used for generation of mask design, which can be used for the fabrication of the photonic crystal sensor. It has been observed from the band structure that for little change in refractive index, there will be a moderate shift in the frequency and transmitted output power and hence it acts as a sensor. This indicates that it is highly sensitive for the change in refractive index.
Keywords :
biosensors; chemical sensors; finite difference time-domain analysis; photonic crystals; refractive index; 2D photonic crystal-based biosensor; IPKISS software framework; MIT photonic bands simulation tools; Massachusetts Institute of Technology electromagnetic equation propagation; band structure; finite-difference time-domain method; frequency shift; glucose concentration detection; line defect; mask design; photonic crystal-based biosensor design; refractive index; urine; wavelength 1530 nm to 1565 nm; Diabetes; Mathematical model; Photonic crystals; Refractive index; Resonant frequency; Sensors; Sugar; FDTD; IPKISS software framework; MEEP; MPB; Optical biosensors; photonic crystal;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2014.2359799