Photonic Crystal Waveguide Biochemical Sensor for the Approximation of Chemical Components Concentrations

被引:0
|
作者
Balveer Painam
R. S. Kaler
Mukesh Kumar
机构
[1] Thapar Institute of Engineering and Technology University,Optical Fiber Communication Research Laboratory (OFCR Lab), ECE Department
[2] Indian Institute of Technology,Integrated Photonics Laboratory, Department of Electrical Engineering
来源
Plasmonics | 2017年 / 12卷
关键词
Photonic bandgap materials; Photonic crystals; Waveguide; Optical sensing and sensors; Optical properties;
D O I
暂无
中图分类号
学科分类号
摘要
The rapid progress in chemical and biochemical applications with optical interfaces has motivated an ever-increasing demand for highly sensitive, accurate, and disposable photonic components. We propose a design of biochemical sensor to identify the chemical components acid concentrations with a greater accuracy using photonic crystal waveguide (PCW). It consists of circular air holes of radius 0.44 a (a being the lattice constant), arranged in a hexagonal structure on silicon on insulator (SOI). Due to change in refractive index of the sample, resonance wavelength shifts towards higher wavelengths (red shift) with a higher coefficient of determination. The proposed design allows desired input wavelength of 1550 nm to be guided in the waveguide for an effective identification of chemical component concentration. Resolution and limit of detection are calculated as 1.2 nm and 4 × 10−2 RIU for sulfuric acid (H2SO4) solution and 0.2 nm and 2 × 10−2 RIU for hydrogen peroxide (H2O2) solution. Improved sensitivities with increased standard deviations are achieved after structural optimization.
引用
收藏
页码:899 / 904
页数:5
相关论文
共 50 条
  • [1] Photonic Crystal Waveguide Biochemical Sensor for the Approximation of Chemical Components Concentrations
    Painam, Balveer
    Kaler, R. S.
    Kumar, Mukesh
    PLASMONICS, 2017, 12 (03) : 899 - 904
  • [2] Comprehensive FDTD modelling of photonic crystal waveguide components
    Lavrinenko, A
    Borel, PI
    Frandsen, LH
    Thorhauge, M
    Harpoth, A
    Kristensen, M
    Niemi, T
    Chong, HMH
    OPTICS EXPRESS, 2004, 12 (02): : 234 - 248
  • [3] Fabrication and Application of Photonic Crystal Biochemical Sensor
    Hou, Huipeng
    Liang, Axin
    Tang, Bo
    Liu, Zongkun
    Luo, Aiqin
    PROGRESS IN CHEMISTRY, 2021, 33 (07) : 1126 - 1137
  • [4] Methane and hydrogen sensor based on photonic crystal waveguide
    Zhang, Wen
    Wang, Haoran
    Chen, Cancan
    Tang, Shoufeng
    Liu, Hai
    NINTH INTERNATIONAL SYMPOSIUM ON PRECISION MECHANICAL MEASUREMENTS, 2019, 11343
  • [5] Label Free Chemical and Biochemical Sensing Using Photonic Crystal Waveguide at Sodium D-Line
    Painam, Balveer
    Kaler, R. S.
    Kumar, Mukesh
    JOURNAL OF NANOELECTRONICS AND OPTOELECTRONICS, 2017, 12 (02) : 184 - 188
  • [6] Refractometric optical sensor based on tapered photonic crystal waveguide
    Kliros, G. S.
    Papageorgiou, K. A.
    JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS, 2010, 12 (07): : 1530 - 1533
  • [7] Design and simulation of high sensitive photonic crystal waveguide sensor
    Goyal, Amit Kumar
    Pal, Suchandan
    OPTIK, 2015, 126 (02): : 240 - 243
  • [8] Structure optimization of slotted photonic crystal waveguide for gas sensor
    Zhao, Yong
    Zhang, Ya-Nan
    Wu, Di
    Wang, Qi
    22ND INTERNATIONAL CONFERENCE ON OPTICAL FIBER SENSORS, PTS 1-3, 2012, 8421
  • [9] A fluid sensor based on a sub-terahertz photonic crystal waveguide
    Hasek, T.
    Kurt, H.
    Citrin, D. S.
    Koch, M.
    PHOTONIC CRYSTAL MATERIALS AND DEVICES VI, 2007, 6480
  • [10] Improved Sensitivity of the Refractive Index Sensor Based on a Photonic Crystal Waveguide
    Bendib, Sarra
    Zegadi, Ameur
    ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2017, 42 (06) : 2559 - 2563