• Laser & Optoelectronics Progress
  • Vol. 59, Issue 17, 1728001 (2022)
Xu Zhang1、2, Benlei Zhao1、2, Bo Wu1、2, Hancheng Zhang1、2, and Hai Liu1、2、*
Author Affiliations
  • 1The Engineering Research Center of Intelligent Control for Underground Space, Ministry of Education, China University of Mining and Technology, Xuzhou 221116, Jiangsu , China
  • 2School of Information and Control Engineering, China University of Mining and Technology, Xuzhou 221116, Jiangsu , China
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    DOI: 10.3788/LOP202259.1728001 Cite this Article Set citation alerts
    Xu Zhang, Benlei Zhao, Bo Wu, Hancheng Zhang, Hai Liu. All-Dielectric Metasurface Sensor Based on Fano Resonance[J]. Laser & Optoelectronics Progress, 2022, 59(17): 1728001 Copy Citation Text show less
    References

    [1] Limonov M F, Rybin M V, Poddubny A N et al. Fano resonances in photonics[J]. Nature Photonics, 11, 543-554(2017).

    [2] Miroshnichenko A E, Flach S, Kivshar Y S. Fano resonances in nanoscale structures[J]. Reviews of Modern Physics, 82, 2257-2298(2010).

    [3] Zhang M D, Wang W T, Sun P et al. A highly efficient nonlinear metasurface based on nanoring-rod structures[J]. Acta Optica Sinica, 41, 1219002(2021).

    [4] Nguyen V A, Ngo Q M, le K Q. Efficient color filters based on Fano-like guided-mode resonances in photonic crystal slabs[J]. IEEE Photonics Journal, 10, 17665542(2018).

    [5] Muhammad N, Ouyang Z B, Liu Q et al. Sensitive label-free sensor with high figure of merit based on plasmonic metasurface with unit cell of double two-split nanorings[J]. Journal of Materials Science, 54, 6301-6309(2019).

    [6] Cheng R J, Xu L, Yu X et al. High-sensitivity biosensor for identification of protein based on terahertz Fano resonance metasurfaces[J]. Optics Communications, 473, 125850(2020).

    [7] Liu G D, Zhai X, Wang L L et al. A high-performance refractive index sensor based on Fano resonance in Si split-ring metasurface[J]. Plasmonics, 13, 15-19(2018).

    [8] Lee Y, Kim S J, Park H et al. Metamaterials and metasurfaces for sensor applications[J]. Sensors, 17, 1726(2017).

    [9] Deng Z L, Tu Q G, Li X P. Multi-dimensional metasurface and its application in information encryption and anti-counterfeiting[J]. Infrared and Laser Engineering, 49, 20201034(2020).

    [10] Wang X K, Li Z. Novel Huygens metasurface with capability of anomalous transmission[J]. Acta Photonica Sinica, 50, 0216001(2021).

    [11] Wu C, Khanikaev A B, Adato R et al. Fano-resonant asymmetric metamaterials for ultrasensitive spectroscopy and identification of molecular monolayers[J]. Nature Materials, 11, 69-75(2012).

    [12] Modi K S, Kaur J, Singh S P et al. Extremely high figure of merit in all-dielectric split asymmetric arc metasurface for refractive index sensing[J]. Optics Communications, 462, 125327(2020).

    [13] Zhang G Q, Lan C W, Bian H L et al. Flexible, all-dielectric metasurface fabricated via nanosphere lithography and its applications in sensing[J]. Optics Express, 25, 22038-22045(2017).

    [14] Long X Y, Zhang M, Xie Z W et al. Sharp Fano resonance induced by all-dielectric asymmetric metasurface[J]. Optics Communications, 459, 124942(2020).

    [15] Cui C C, Zhou C B, Yuan S et al. Multiple Fano resonances in symmetry-breaking silicon metasurface for manipulating light emission[J]. ACS Photonics, 5, 4074-4080(2018).

    [16] Leitis A, Tittl A, Liu M K et al. Angle-multiplexed all-dielectric metasurfaces for broadband molecular fingerprint retrieval[J]. Science Advances, 5, eaaw2871(2019).

    [17] Savinov V, Fedotov V A, Zheludev N I. Toroidal dipolar excitation and macroscopic electromagnetic properties of metamaterials[J]. Physical Review B, 89, 205112(2014).

    [18] Li J, Shao J, Wang Y H et al. Toroidal dipolar response by a dielectric microtube metamaterial in the terahertz regime[J]. Optics Express, 23, 29138-29144(2015).

    [19] Bao Y J, Hu Z J, Li Z W et al. Magnetic plasmonic Fano resonance at optical frequency[J]. Small, 11, 2177-2181(2015).

    [20] Wu P C, Liao C Y, Savinov V et al. Optical anapole metamaterial[J]. ACS Nano, 12, 1920-1927(2018).

    [21] Yang J C, Zhou L, Che X et al. Photonic crystal fiber methane sensor based on modal interference with an ultraviolet curable fluoro-siloxane nano-film incorporating cryptophane A[J]. Sensors and Actuators B: Chemical, 235, 717-722(2016).

    Xu Zhang, Benlei Zhao, Bo Wu, Hancheng Zhang, Hai Liu. All-Dielectric Metasurface Sensor Based on Fano Resonance[J]. Laser & Optoelectronics Progress, 2022, 59(17): 1728001
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