Acta Optica Sinica, Volume. 43, Issue 23, 2316002(2023)

High Q-Factor Terahertz All-Dielectric Metamaterial with Bound States in Continuum Based on Split Ring Resonator

Shuai Yue1, Doudou Wang1、*, Tian Ma2, and Jiangkun Tian1
Author Affiliations
  • 1College of Sciences, Xi'an University of Science and Technology, Xi'an 710054, Shaanxi , China
  • 2College of Safety Science and Engineering, Xi'an University of Science and Technology, Xi'an 710054, Shaanxi , China
  • show less
    References(33)

    [1] Zheludev N I, Kivshar Y S. From metamaterials to metadevices[J]. Nature Materials, 11, 917-924(2012).

    [2] Gupta M, Srivastava Y K, Manjappa M et al. Sensing with toroidal metamaterial[J]. Applied Physics Letters, 110, 121108(2017).

    [3] Xu W D, Xie L J, Ying Y B. Mechanisms and applications of terahertz metamaterial sensing: a review[J]. Nanoscale, 9, 13864-13878(2017).

    [4] Salim A, Lim S. Recent advances in the metamaterial-inspired biosensors[J]. Biosensors and Bioelectronics, 117, 398-402(2018).

    [5] Xu W D, Xie L J, Zhu J F et al. Terahertz biosensing with a graphene-metamaterial heterostructure platform[J]. Carbon, 141, 247-252(2019).

    [6] Wang Z Y, Geng Z X, Fang W H. Exploring performance of THz metamaterial biosensor based on flexible thin-film[J]. Optics Express, 28, 26370-26384(2020).

    [7] Jeong J, Goldflam M D, Campione S et al. High quality factor toroidal resonances in dielectric metasurfaces[J]. ACS Photonics, 7, 1699-1707(2020).

    [8] Liu L, Li Z, Cai C Y et al. High-Q hybridized resonance in a plasmonic metasurface of asymmetric aligned magnetic dipoles[J]. Applied Physics Letters, 117, 081108(2020).

    [9] Kodigala A, Lepetit T, Gu Q et al. Lasing action from photonic bound states in continuum[J]. Nature, 541, 196-199(2017).

    [10] Lyapina A A, Maksimov D N, Pilipchuk A S et al. Bound states in the continuum in open acoustic resonators[J]. Journal of Fluid Mechanics, 780, 370-387(2015).

    [11] Chen Z G, Xu C Q, Al Jahdali R et al. Corner states in a second-order acoustic topological insulator as bound states in the continuum[J]. Physical Review B, 100, 075120(2019).

    [12] Plotnik Y, Peleg O, Dreisow F et al. Experimental observation of optical bound states in the continuum[J]. Physical Review Letters, 107, 183901(2011).

    [13] Liu W Z, Wang B, Zhang Y W et al. Circularly polarized states spawning from bound states in the continuum[J]. Physical Review Letters, 123, 116104(2019).

    [14] Cerjan A, Jürgensen M, Benalcazar W A et al. Observation of a higher-order topological bound state in the continuum[J]. Physical Review Letters, 125, 213901(2020).

    [15] Zhao J, Wang J X, Lai L P et al. High-Q dual-band terahertz sensor based on all-dielectric metasurface[J]. Laser & Optoelectronics Progress, 59, 1304004(2022).

    [16] Cong L Q, Singh R. Symmetry-protected dual bound states in the continuum in metamaterials[J]. Advanced Optical Materials, 7, 1900383(2019).

    [17] Melik-Gaykazyan E, Koshelev K, Choi J H et al. From Fano to quasi-BIC resonances in individual dielectric nanoantennas[J]. Nano Letters, 21, 1765-1771(2021).

    [18] Forouzmand A, Mosallaei H. All-dielectric C-shaped nanoantennas for light manipulation: tailoring both magnetic and electric resonances to the desire[J]. Advanced Optical Materials, 5, 1700147(2017).

    [19] Liu M K, Powell D A, Guo R et al. Polarization-induced chirality in metamaterials via optomechanical interaction[J]. Advanced Optical Materials, 5, 1600760(2017).

    [20] Wang Y L, Han Z H, Du Y et al. Ultrasensitive terahertz sensing with high-Q toroidal dipole resonance governed by bound states in the continuum in all-dielectric metasurface[J]. Nanophotonics, 10, 1295-1307(2021).

    [21] Jahani S, Jacob Z. All-dielectric metamaterials[J]. Nature Nanotechnology, 11, 23-36(2016).

    [22] Ma T, Huang Q P, He H C et al. All-dielectric metamaterial analogue of electromagnetically induced transparency and its sensing application in terahertz range[J]. Optics Express, 27, 16624-16634(2019).

    [23] Fu X J, Cui T J. Recent progress on metamaterials: from effective medium model to real-time information processing system[J]. Progress in Quantum Electronics, 67, 100223(2019).

    [24] Bi K, Wang Q M, Xu J C et al. All-dielectric metamaterial fabrication techniques[J]. Advanced Optical Materials, 9, 2001474(2021).

    [25] Bi K, Yang D Q, Chen J et al. Experimental demonstration of ultra-large-scale terahertz all-dielectric metamaterials[J]. Photonics Research, 7, 457-463(2019).

    [26] Li H, Yu S L, Yang L et al. High Q-factor multi-Fano resonances in all-dielectric double square hollow metamaterials[J]. Optics & Laser Technology, 140, 107072(2021).

    [27] Yang Y M, Kravchenko I I, Briggs D P et al. All-dielectric metasurface analogue of electromagnetically induced transparency[J]. Nature Communications, 5, 5753(2014).

    [28] Zhang X Y, Gu J Q, Shi W Q. Terahertz continuum bound supersurface based on metal split-ring resonator[J]. Chinese Journal of Lasers, 50, 0214001(2023).

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

    [30] Zhong Y J, Du L H, Liu Q et al. Ultrasensitive specific sensor based on all-dielectric metasurfaces in the terahertz range[J]. RSC Advances, 10, 33018-33025(2020).

    [31] Xie Q, Dong G X, Wang B X et al. High-Q Fano resonance in terahertz frequency based on an asymmetric metamaterial resonator[J]. Nanoscale Research Letters, 13, 294(2018).

    [32] Yahiaoui R, Tan S Y, Cong L Q et al. Multispectral terahertz sensing with highly flexible ultrathin metamaterial absorber[J]. Journal of Applied Physics, 118, 083103(2015).

    [33] He X J, Zhang Q F, Lu G J et al. Tunable ultrasensitive terahertz sensor based on complementary graphene metamaterials[J]. RSC Advances, 6, 52212-52218(2016).

    Tools

    Get Citation

    Copy Citation Text

    Shuai Yue, Doudou Wang, Tian Ma, Jiangkun Tian. High Q-Factor Terahertz All-Dielectric Metamaterial with Bound States in Continuum Based on Split Ring Resonator[J]. Acta Optica Sinica, 2023, 43(23): 2316002

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Materials

    Received: May. 31, 2023

    Accepted: Sep. 6, 2023

    Published Online: Dec. 8, 2023

    The Author Email: Wang Doudou (wangdoudou@xust.edu.cn)

    DOI:10.3788/AOS231075

    Topics