1D topological photonic crystal based nanosensor for tuberculosis detection

被引:1
|
作者
Thara, R. Lakshmi [1 ]
Priya, P. Aruna [1 ]
机构
[1] SRM Inst Sci & Technol, Coll Engn, Dept Elect & Commun Engn, Kattankulathur 603203, TN, India
关键词
optical biosensor; random structure; structure-property relationship; topological photonic crystal; tuberculosis;
D O I
10.1088/1361-6528/ad61ec
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
In this study, we present a nanosized biosensor based on the photobiological properties of one-dimensional (1D) topological photonic crystals (PCs). A topological structure had been designed by combining two PC structures (PC 1 and PC 2) comprised of functional material layers, Si and SiO2. These two, PC 1 and PC 2, differ in terms of the thickness and arrangement of these dielectric materials. We carried out a comparison between two distinct topological PCs: one using random PCs, and the other featuring a mirror heterostructure. Tuberculosis may be diagnosed by inserting a sensor layer into 1D topological PCs. The sensing process is based on the refractive indexes of the analytes in the sensor layer. When the 1D-topological heterostructure-based PC and its mirror-image structures are stacked together, the sensor becomes more efficient for analyte detection than the conventional PCs. The random-based topological PC outperformed the heterostructure-based topological PC in analyte sensing. Photonic media witness notable blue shifts due to the analytes' variations in refractive index. The numerical results of the sensor are computed using the transfer matrix approach. Effective results are achieved by optimizing the thicknesses of the sensor layer and dielectric layers; number of periods and incident angle. In normal incident light, the developed sensor shows a high sensitivity of 1500 nm RIU-1 with a very low limit of detection in the order of 2.2 x 10-06 RIU and a high-quality factor of 30 659.54.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Mode delocalization in 1D photonic crystal lasers
    Wu, Yeheng
    Singer, Kenneth D.
    Petschek, Rolfe G.
    Song, Hyunmin
    Baer, Eric
    Hiltner, Anne
    OPTICS EXPRESS, 2009, 17 (20): : 18038 - 18043
  • [22] Highly Sensitive 1D Photonic Crystal Biosensor
    Ibrahim, Mahmoud Salman S.
    Tarek, Mohamed
    Obayya, S. S. A.
    Hameed, Mohamed Farhat O.
    2021 INTERNATIONAL APPLIED COMPUTATIONAL ELECTROMAGNETICS SOCIETY SYMPOSIUM (ACES), 2021,
  • [23] Band structure computation of 1D photonic crystal
    Varshney, SK
    Singh, MP
    Sinha, RK
    PHOTONIC CRYSTAL MATERIALS AND DEVICES, 2003, 5000 : 89 - 94
  • [24] Vertically etched silicon as 1D photonic crystal
    Tolmachev, VA
    Perova, TS
    Astrova, EV
    Volchek, BZ
    Vij, JK
    PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2003, 197 (02): : 544 - 548
  • [25] Laser effect in nonlinear 1D photonic crystal
    Kozina, Olga N.
    Melnikov, Leonid A.
    SARATOV FALL MEETING 2005: LASER PHYSICS AND PHOTONICS, SPECTROSCOPY AND MOLECULAR MODELING VI, 2006, 6165
  • [26] Enhanced 1D photonic crystal biosensor for blood components and blood infection detection
    Nasr, Donia M.
    Mostafa, Samia I.
    El Naggar, Mona A.
    EUROPEAN PHYSICAL JOURNAL D, 2024, 78 (05):
  • [27] Defective 1D quinary photonic crystal sensors for the detection of cancerous blood cells
    Ashour, Hassan S.
    Abohassan, Khedr M.
    Abadla, Mazen M.
    OPTICAL ENGINEERING, 2021, 60 (12)
  • [28] Biophotonic sensor for rapid detection of brain lesions using 1D photonic crystal
    Nouman, Walaa M.
    Abd El-Ghany, S. E. S.
    Sallam, Samira M.
    Dawood, Abdel-Fattah B.
    Aly, Arafa H.
    OPTICAL AND QUANTUM ELECTRONICS, 2020, 52 (06)
  • [29] Biophotonic sensor for rapid detection of brain lesions using 1D photonic crystal
    Walaa M. Nouman
    S. E.-S. Abd El-Ghany
    Samira M. Sallam
    Abdel-Fattah B. Dawood
    Arafa H. Aly
    Optical and Quantum Electronics, 2020, 52
  • [30] Dielectric Material Based Band Gap Tailoring For 1D Photonic Crystal
    Dasgupta, S.
    Bose, C.
    TRANSPORT AND OPTICAL PROPERTIES OF NANOMATERIALS, 2009, 1147 : 166 - +