4.7 Article

A Dual-Band High-Sensitivity THz Metamaterial Sensor Based on Split Metal Stacking Ring

期刊

BIOSENSORS-BASEL
卷 12, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/bios12070471

关键词

terahertz; metamaterial; dual-band sensor; high-sensitivity; refractive index

资金

  1. National Natural Science Foundation of China [61975053, 61705061]
  2. Natural Science Foundation of Henan [222300420040, 202300410111]
  3. Program for Science & Technology Innovation Talents in Universities of Henan Province [22HASTIT017]
  4. Open Fund Project of Key Laboratory of Grain Information Processing & Control, Ministry of Education, Henan University of Technology [KFJJ2020103]
  5. Major public welfare projects of Henan Province [201300210100]
  6. Innovative Funds Plan of Henan University of Technology [2021ZKCJ04]
  7. Cultivation Programme for Young Backbone Teachers in Henan University of Technology
  8. Key Science and Technology Program of Henan Province of China [222102110246]
  9. major science and technology project of Henan Province [211110110500]

向作者/读者索取更多资源

This paper proposes a dual-band, high-sensitivity THz MM sensor based on metamaterial, which can efficiently detect different substances at different resonant frequencies, with the advantage of multi-point matching being validated.
Terahertz (THz)-detection technology has been proven to be an effective and rapid non-destructive detection approach in biomedicine, quality control, and safety inspection, among other applications. However, the sensitivity of such a detection method is limited due to the insufficient power of the terahertz source and the low content, or ambiguous characteristics, of the analytes to be measured. Metamaterial (MM) is an artificial structure in which periodic sub-wavelength units are arranged in a regular manner, resulting in extraordinary characteristics beyond those possessed by natural materials. It is an effective method to improve the ability of terahertz spectroscopy detection by utilizing the metamaterial as a sensor. In this paper, a dual-band, high-sensitivity THz MM sensor based on the split metal stacking ring resonator (SMSRR) is proposed. The appliance exhibited two resonances at 0.97 and 2.88 THz in the range of 0.1 to 3 THz, realizing multi-point matching between the resonance frequency and the characteristic frequency of the analytes, which was able to improve the reliability and detection sensitivity of the system. The proposed sensor has good sensing performance at both resonant frequencies and can achieve highest sensitivities of 304 GHz/RIU and 912 GHz/RIU with an appropriate thickness of the analyte. Meanwhile, the advantage of multi-point matching of the proposed sensor has been validated by distinguishing four edible oils based on their different refractive indices and demonstrating that the characteristics obtained in different resonant frequency bands are consistent. This work serves as a foundation for future research on band extension and multi-point feature matching in terahertz detection, potentially paving the way for the development of high-sensitivity THz MM sensors.

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