• Photonics Research
  • Vol. 10, Issue 12, 2743 (2022)
Pengfei Wang, Fengyan He, Jianjun Liu, Fangzhou Shu, Bin Fang, Tingting Lang, Xufeng Jing, and Zhi Hong*
Author Affiliations
  • Centre for THz Research, China Jiliang University, Hangzhou 310018, China
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    DOI: 10.1364/PRJ.470657 Cite this Article Set citation alerts
    Pengfei Wang, Fengyan He, Jianjun Liu, Fangzhou Shu, Bin Fang, Tingting Lang, Xufeng Jing, Zhi Hong. Ultra-high-Q resonances in terahertz all-silicon metasurfaces based on bound states in the continuum[J]. Photonics Research, 2022, 10(12): 2743 Copy Citation Text show less
    References

    [1] C. W. Hsu, B. Zhen, A. D. Stone, J. D. Joannopoulos, M. Soljačić. Bound states in the continuum. Nat. Rev. Mater., 1, 16048(2016).

    [2] S. I. Azzam, A. V. Kildishev. Photonic bound states in the continuum: from basics to applications. Adv. Opt. Mater., 9, 2001469(2020).

    [3] N. J. J. van Hoof, D. R. Abujetas, S. E. T. Huurne, F. Verdelli, G. C. A. Timmermans, J. A. Sánchez-Gil, J. G. Rivas. Unveiling the symmetry protection of bound states in the continuum with terahertz near-field imaging. ACS Photonics, 8, 3010-3016(2021).

    [4] Z. F. Sadrieva, I. S. Sinev, K. L. Koshelev, A. Samusev, I. V. Iorsh, O. Takayama, R. Malureanu, A. A. Bogdanov, A. V. Lavrinenko. Transition from optical bound states in the continuum to leaky resonances: role of substrate and roughness. ACS Photonics, 4, 723-727(2017).

    [5] H. M. Doeleman, F. Monticone, W. den Hollander, A. Alù, A. F. Koenderink. Experimental observation of a polarization vortex at an optical bound state in the continuum. Nat. Photonics, 12, 397-401(2018).

    [6] Y. Plotnik, O. Peleg, F. Dreisow, M. Heinrich, S. Nolte, A. Szameit, M. Segev. Experimental observation of optical bound states in the continuum. Phys. Rev. Lett., 107, 183901(2011).

    [7] H. Friedrich, D. Wintgen. Interfering resonances and bound states in the continuum. Phys. Rev. A, 32, 3231-3242(1985).

    [8] L. Q. Cong, R. J. Singh. Symmetry-protected dual bound states in the continuum in metamaterials. Adv. Opt. Mater., 7, 1900383(2019).

    [9] Y. He, G. T. Guo, T. H. Feng, Y. Xu, A. E. Miroshnichenko. Toroidal dipole bound states in the continuum. Phys. Rev. B, 98, 161112(2018).

    [10] D. R. Abujetas, N. V. Hoof, S. T. Huurne, J. G. Rivas, J. A. Sánchez-Gil. Spectral and temporal evidence of robust photonic bound states in the continuum on terahertz metasurfaces. Optica, 6, 996-1001(2019).

    [11] K. Fan, I. V. Shadrivov, W. J. Padilla. Dynamic bound states in the continuum. Optica, 6, 169-173(2019).

    [12] A. Kodigala, T. Lepetit, Q. Gu, B. Bahari, Y. Fainman, B. Kanté. Lasing action from photonic bound states in continuum. Nature, 541, 196-199(2017).

    [13] M. V. Rybin, K. L. Koshelev, Z. F. Sadrieva, K. B. Samusev, A. A. Bogdanov, M. F. Limonov, Y. S. Kivshar. High-Q supercavity modes in subwavelength dielectric resonators. Phys. Rev. Lett., 119, 243901(2017).

    [14] S. Han, L. Cong, Y. K. Srivastava, B. Qiang, M. V. Rybin, A. Kumar, R. Jain, W. X. Lim, V. G. Achanta, S. S. Prabhu, Q. J. Wang, Y. S. Kivshar, R. Singh. All-dielectric active terahertz photonics driven by bound states in the continuum. Adv. Mater., 31, 1901921(2019).

    [15] K. Koshelev, A. Bogdanov, Y. Kivshar. Meta-optics and bound states in the continuum. Sci. Bull., 64, 836-842(2019).

    [16] X. Zhao, C. Chen, K. Kaj, I. Hammock, Y. Huang, R. D. Averitt, X. Zhang. Terahertz investigation of bound states in the continuum of metallic metasurfaces. Optica, 7, 1548-1554(2020).

    [17] C. W. Hsu, B. Zhen, J. Lee, S. L. Chua, S. G. Johnson, J. D. Joannopoulos, M. Soljačić. Observation of trapped light within the radiation continuum. Nature, 499, 188-191(2013).

    [18] D. R. Abujetas, J. Olmos-Trigo, J. A. Sanchez-Gil. Tailoring accidental double bound states in the continuum in all-dielectric metasurfaces. Adv. Opt. Mater., 10, 2200301(2022).

    [19] A. C. Overvig, S. Shrestha, N. F. Yu. Dimerized high contrast gratings. Nanophotonics, 7, 1157-1168(2018).

    [20] W. Q. Shi, J. Q. Gu, X. Y. Zhang, Q. Xu, J. G. Han, Q. L. Yang, L. Q. Cong, W. L. Zhang. Terahertz bound states in the continuum with incident angle robustness induced by a dual period metagrating. Photonics Res., 10, 810-819(2022).

    [21] F. Wu, J. J. Wu, Z. W. Guo, H. T. Jiang, Y. Sun, Y. H. Li, J. Ren, H. Chen. Giant enhancement of the Goos-Hanchen shift assisted by quasibound states in the continuum. Phys. Rev. Appl., 12, 014028(2019).

    [22] S. Murai, D. R. Abujetas, L. B. Liu, G. W. Castellanos, V. Giannini, J. A. Sanchez-Gil, K. Tanaka, J. G. Rivas. Engineering bound states in the continuum at telecom wavelengths with non-Bravais lattices. Laser Photonics Rev.(2022).

    [23] Y. K. Srivastava, M. Gupta, R. Singh. Terahertz sensing of 7 nm dielectric film with bound states in the continuum metasurfaces. Appl. Phys. Lett., 115, 151105(2019).

    [24] A. Tittl, A. Leitis, M. Liu, F. Yesilkoy, D. Y. Choi, D. N. Neshev, Y. S. Kivshar, H. Altug. Imaging-based molecular barcoding with pixelated dielectric metasurfaces. Science, 360, 1105-1109(2018).

    [25] F. Yesilkoy, E. R. Arvelo, Y. Jahani, M. Liu, A. Tittl, V. Cevher, Y. Kivshar, H. Altug. Ultrasensitive hyperspectral imaging and biodetection enabled by dielectric metasurfaces. Nat. Photonics, 13, 390-396(2019).

    [26] X. Chen, W. Fan. Ultrahigh-Q toroidal dipole resonance in all-dielectric metamaterials for terahertz sensing. Opt. Lett., 44, 5876-5879(2019).

    [27] C. Huang, C. Zhang, S. Xiao, L. Ge, Y. Kivshar, Q. Song. Ultrafast control of vortex microlasers. Science, 367, 1018-1021(2020).

    [28] M. S. Hwang, H. C. Lee, K. H. Kim, K. Y. Jeong, S. H. Kwon, K. Koshelev, Y. Kivshar, H. G. Park. Ultralow-threshold laser using super-bound states in the continuum. Nat. Commun., 12, 4135(2021).

    [29] L. Carletti, K. Koshelev, C. D. Costntino, D. Angelis, Y. Kivshar. Giant nonlinear response at the nanoscale driven by bound states in the continuum. Phys. Rev. Lett., 121, 033903(2018).

    [30] K. Koshelev, Y. Tang, K. Li, D. Y. Choi, G. Li, Y. Kivshar. Nonlinear metasurfaces governed by bound states in the continuum. ACS Photonics, 6, 1639-1644(2019).

    [31] V. A. Fedotov, M. Rose, S. L. Prosvirnin, N. Papasimakis, N. I. Zhelodev. Sharp trapped-mode resonances in planar metamaterials with a broken structural symmetry. Phys. Rev. Lett., 99, 147401(2007).

    [32] W. Cao, R. Singh, A. Al-Naib, M. He, J. Taylor, W. Zhang. Low-loss ultra-high-Q dark mode plasmonic Fano metamaterials. Opt. Lett., 37, 3366-3368(2012).

    [33] B. X. Han, X. J. Li, C. S. Sui, J. Y. Diao, X. F. Jing, Z. Hong. Analog of electromagnetically induced transparency in an E-shaped all-dielectric metasurface based on toroidal dipolar response. Opt. Mater. Express, 8, 2197-2207(2018).

    [34] Z. H. Wang, L. L. Chen, X. J. Li, T. T. Lang, X. F. Jing, Z. Hong. Analogue of electromagnetically induced transparency with ultra-narrow bandwidth in a silicon terahertz metasurface. Opt. Mater. Express, 11, 1943-1952(2021).

    [35] Y. Yang, I. I. Kravchenko, D. P. Briggs, J. Valentine. All-dielectric metasurface analogue of electromagnetically induced transparency. Nat. Commun., 5, 5753(2014).

    [36] S. Campione, S. Liu, L. I. Basilio, L. K. Warne, W. L. Langston, T. S. Luk, J. R. Wendt, J. L. Reno, G. A. Keeler, I. Brener, M. B. Sinclair. Broken symmetry dielectric resonators for high quality factor Fano metasurfaces. ACS Photonics, 3, 2362-2367(2016).

    [37] S. Yuan, X. Qiu, C. Cui, L. Zhu, Y. Wang, Y. Li, J. Song, Q. Huang, J. Xia. Strong photoluminescence enhancement in all-dielectric Fano metasurface with high quality factor. ACS Nano, 11, 10704-10711(2017).

    [38] B. Auguié, W. L. Barnes. Collective resonances in gold nanoparticle arrays. Phys. Rev. Lett., 101, 143902(2008).

    [39] V. G. Kravets, F. Schedin, A. N. Grigorenko. Extremely narrow plasmon resonances based on diffraction coupling of localized plasmons in arrays of metallic nanoparticles. Phys. Rev. Lett., 101, 087403(2008).

    [40] M. S. Bin-Alam, O. Reshef, Y. Mamchur, M. Z. Alam, G. Carlow, J. Upham, B. T. Sullivan, J. M. Ménard, M. J. Huttunen, R. W. Boyd, K. Dolgaleva. Ultra-high-Q resonances in plasmonic metasurfaces. Nat. Commun., 12, 974(2021).

    [41] K. Koshele, S. Lepeshov, M. Liu, A. Bogdanov, Y. Kivshar. Asymmetric metasurfaces with high-Q resonances governed by bound states in the continuum. Phys. Rev. Lett., 121, 193903(2018).

    [42] S. T. Ha, Y. H. Fu, N. K. Emani, Z. Y. Pan, R. M. Bakker, R. Paniagua-Dominguez, A. I. Kuznetsov. Directional lasing in resonant semiconductor nanoantenna arrays. Nat. Nanotechnol., 13, 1042-1047(2018).

    [43] Z. J. Liu, Y. Xu, Y. Lin, J. Xiang, T. H. Feng, Q. T. Cao, J. T. Li, S. Lan, J. Liu. High-Q quasibound states in the continuum for nonlinear metasurfaces. Phys. Rev. Lett., 123, 253901(2019).

    [44] C. C. Cui, C. B. Zhou, S. Yuan, X. Z. Qiu, L. Q. Zhu, Y. X. Wang, Y. Li, J. W. Song, Z. Huang, Y. Wang, C. Zeng, J. S. Xia. Multiple Fano resonances in symmetry breaking silicon metasurface for manipulating light emission. ACS Photonics, 5, 4074-4080(2018).

    [45] Q. Yang, D. Wang, S. Kruk, M. Liu, I. Kravchenko, J. Han, Y. Kivshar, I. Shadrivova. Topology-empowered membrane devices for terahertz photonics. Adv. Photonics, 4, 046002(2022).

    [46] Q. Yang, S. Kruk, Y. Xu, Q. Wang, Y. K. Srivastava, K. Koshelev, I. Kravchenko, R. Singh, J. Han, Y. Kivshar, I. Shadrivov. Mie-resonant membrane Huygens’ metasurfaces. Adv. Funct. Mater., 30, 1906851(2020).

    [47] L. Li, H. Zhao, C. Liu, L. Li, T. J. Cui. Intelligent metasurfaces: control, communication and computing. eLight, 2, 7(2022).

    [48] D. Lee, S. So, G. Hu, M. Kim, T. Badloe, H. Cho, J. Kim, H. Kim, C. W. Qiu, J. Rho. Hyperbolic metamaterials: fusing artificial structures to natural 2D materials. eLight, 2, 1(2022).

    [49] M. Galli, S. L. Portalupi, M. Belotti, L. C. Andrean, T. F. Lrauss. Light scattering and Fano resonances in high-Q photonic crystal nanocavities. Appl. Phys. Lett., 94, 071101(2009).

    [50] I. S. Maksymov, A. E. Miroshnichenko. Active control over nanofocusing with nanorod plasmonic antennas. Opt. Express, 19, 5888-5894(2011).

    [51] S. S. Wang, R. Magnusson. Theory and applications of guided-mode resonance filters. Appl. Opt., 32, 2606-2613(1993).

    [52] Z. Yu, H. Chen, J. Liu, X. Jing, X. Li, Z. Hong. Guided mode resonance in planar metamaterials consisting of two ring resonators with different size. Chin. Phys. B, 26, 077804(2017).

    [53] T. Chen, P. Liu, J. Liu, Z. Hong. A terahertz photonic crystal cavity with high Q-factors. Appl. Phys. B, 115, 105-109(2014).

    [54] A. Kumar, M. Gupta, P. Pitchappa, T. C. Tan, U. Chattopadhyay, G. Ducournau, N. Wang, Y. Chong, R. Singh. On-chip active control of ultra-high-Q terahertz photonic topological cavities. Adv. Mater., 34, 2202370(2022).

    Pengfei Wang, Fengyan He, Jianjun Liu, Fangzhou Shu, Bin Fang, Tingting Lang, Xufeng Jing, Zhi Hong. Ultra-high-Q resonances in terahertz all-silicon metasurfaces based on bound states in the continuum[J]. Photonics Research, 2022, 10(12): 2743
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