High performance mid infrared temperature sensor based on resonance excitation of hybrid Tamm surface states

被引:4
|
作者
Kumar, Mahendra [1 ]
Prasad, Surendra [1 ]
机构
[1] Banaras Hindu Univ, Inst Sci, Dept Phys, Varanasi 221005, India
关键词
Bloch surface wave; Prism coupling; Resonance; Hybrid polariton mode; Sensitivity; PHOTONIC-CRYSTAL; PHONONIC CRYSTAL; ABSORPTION;
D O I
10.1016/j.optmat.2022.112586
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Theoretical design of mid infrared temperature sensor based on the resonance excitation of hybrid Tamm surface state (HTSS) is presented. An excellent sensing performance is attained by the coupling of graphene plasmon polaritons and hexagonal boron nitride (hBN) phonon polaritons that forms hybrid polariton modes at the interface. In one dimensional ternary photonic crystal (1D TPC), terminated by hBN layer sandwiched between graphene monolayers, the coupling between Bloch surface waves and hybrid polariton modes leads to the formation of HTSS or Tamm plasmon-phonon modes. Employing Kretschmann configuration coupling mechanism, the excitation of the HTSSs at the truncated interface is manifested for transverse magnetic (TM) polarized wave. The structure supports excited HTSS between 7.14 mu m to 10.34 mu m that allows astounding control over the sensing ability by varying the number of unit cells and the resonant angles. The sensor has a high detection accuracy of 1010 at room temperature (300K). It is proved that for 50 unit cells and at 49 degrees angle, a high quality factor of 372176, detection limit of 5K and sensitivity of 0.20pm/K is attained with operating range between 280K to 380K. The operating range is widened from 300K to 900K by changing the resonant angle from 49 degrees to 53 degrees. Further, for 30 unit cells and at 53 degrees angle, the temperature sensing ability of the sensor extends from 100K to 900K with a sensitivity of 0.80pm/K and detection limit of 54.16K.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Temperature Effects on the Resolution of Surface-Plasmon-Resonance-Based Sensor
    M. Zekriti
    Plasmonics, 2019, 14 : 763 - 768
  • [42] Temperature effects on prism-based surface plasmon resonance sensor
    Lin Kai-Qun
    Wei Lai-Ming
    Zhang Dou-Guo
    Zheng Rong-Sheng
    Wang Pei
    Lu Yong-Hua
    Ming Hai
    CHINESE PHYSICS LETTERS, 2007, 24 (11) : 3081 - 3084
  • [43] Temperature Detection Based on Surface Plasmon Resonance Sensor for Microwave Ablation
    Zhang, Qi
    Hu, Taotao
    Liu, Hailian
    Korganbayev, Sanzhar
    Saccomandi, Paola
    Zhou, Xue
    Yan, Xin
    Zhang, Xuenan
    Cheng, Tonglei
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2024, 73
  • [44] PCF based surface plasmon resonance temperature sensor with ultrahigh sensitivity
    Fu, Yongbo
    Liu, Min
    Shum, Ping
    Qin, Yijie
    OPTIK, 2022, 250
  • [45] Temperature Effects on the Resolution of Surface-Plasmon-Resonance-Based Sensor
    Zekriti, M.
    PLASMONICS, 2019, 14 (03) : 763 - 768
  • [46] Surface-plasmon-resonance-based optical-fiber temperature sensor with high sensitivity and high figure of merit
    Zhu, Zongda
    Liu, Lu
    Liu, Zhihai
    Zhang, Yu
    Zhang, Yaxun
    OPTICS LETTERS, 2017, 42 (15) : 2948 - 2951
  • [47] A MIM Waveguide Structure of a High-Performance Refractive Index and Temperature Sensor Based on Fano Resonance
    Liu, Pengwei
    Yan, Shubin
    Ren, Yifeng
    Zhang, Xiaoyu
    Li, Tingsong
    Wu, Xiushan
    Shen, Lifang
    Hua, Ertian
    APPLIED SCIENCES-BASEL, 2021, 11 (22):
  • [48] High-performance bimetallic surface plasmon resonance biochemical sensor using a black phosphorus–MXene hybrid structure
    Rajeev Kumar
    Sarika Pal
    Narendra Pal
    Vimal Mishra
    Yogendra Kumar Prajapati
    Applied Physics A, 2021, 127
  • [49] High-performance bimetallic film surface plasmon resonance sensor based on film thickness optimization
    Chen, Shujing
    Lin, Chengyou
    OPTIK, 2016, 127 (19): : 7514 - 7519
  • [50] High-Performance of Star-Photonics Crystal Fiber Based on Surface Plasmon Resonance Sensor
    Irawan, Dedi
    Ramadhan, Khaikal
    Saktioto
    Fitmawati
    Widiyatmoko, Bambang
    Hanto, Dwi
    INDIAN JOURNAL OF PURE & APPLIED PHYSICS, 2022, 60 (09) : 727 - 733