• Chinese Optics Letters
  • Vol. 23, Issue 2, 023602 (2025)
Xin Luo1,2,3, Shilin Yu1,4, Yingli Ha1,3,4, Fei Zhang1,4..., Mingbo Pu1,3,4, Qiong He1,4, Yinghui Guo1,3,4, Mingfeng Xu1,4 and Xiangang Luo1,3,*|Show fewer author(s)
Author Affiliations
  • 1Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, China
  • 2School of Automation Engineering, University of Electronic Science and Technology of China, Chengdu 610054, China
  • 3College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049, China
  • 4National Key Laboratory of Optical Field Manipulation Science and Technology, Chinese Academy of Sciences, Chengdu 610209, China
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    DOI: 10.3788/COL202523.023602 Cite this Article Set citation alerts
    Xin Luo, Shilin Yu, Yingli Ha, Fei Zhang, Mingbo Pu, Qiong He, Yinghui Guo, Mingfeng Xu, Xiangang Luo, "Excitation of multiple bound states in the continuum by arbitrary selection of perturbation via a dielectric metasurface," Chin. Opt. Lett. 23, 023602 (2025) Copy Citation Text show less
    References

    [1] J. H. Yang, Z. T. Huang, D. N. Maksimov et al. Low‐threshold bound state in the continuum lasers in hybrid lattice resonance metasurfaces. Laser Photon. Rev., 15, 2100118(2021).

    [2] M. Hwang, H. Lee, K. Kim et al. Ultralow-threshold laser using super-bound states in the continuum. Nat. Commun., 12, 4135(2021).

    [3] Z. Liu, Y. Xu, Y. Lin et al. High-Q quasibound states in the continuum for nonlinear metasurfaces. Phys. Rev. Lett., 123, 253901(2019).

    [4] A. P. Anthur, H. Zhang, R. P. Dominguez et al. Continuous wave second harmonic generation enabled by quasi-bound-states in the continuum on gallium phosphide metasurfaces. Nano Lett., 20, 8745(2020).

    [5] P. Hong, L. Xu, M. Rahmani. Dual bound states in the continuum enhanced second harmonic generation with transition metal dichalcogenides monolayer. Opto-Electron. Adv., 5, 200097(2022).

    [6] A. Leitis, A. Tittl, M. Liu et al. Angle-multiplexed all-dielectric metasurfaces for broadband molecular fingerprint retrieval. Sci. Adv., 5, eaaw2871(2019).

    [7] F. Yesilkoy, E. R. Arvelo, Y. Jahani et al. Ultrasensitive hyperspectral imaging and biodetection enabled by dielectric metasurfaces. Nat. Photonics., 13, 390(2019).

    [8] S. Romano, M. Mangini, E. Penzo et al. Ultrasensitive surface refractive index imaging based on quasi-bound states in the continuum. ACS Nano., 14, 15417(2020).

    [9] J. Wang, J. Kühne, T. Karamanos et al. All‐dielectric crescent metasurface sensor driven by bound states in the continuum. Adv. Funct. Mater., 31, 2104652(2021).

    [10] B. I. Karawdeniya, A. M. Damry, K. Murugappan et al. Surface functionalization and texturing of optical metasurfaces for sensing applications. Chem. Rev., 122, 14990(2022).

    [11] H. Li, J. Xing, Y. Shi et al. Performance analysis and optimization of high Q-factor toroidal resonance refractive index sensor based on all-dielectric metasurface. Opt. Laser Technol., 157, 108752(2023).

    [12] M. Pu, X. Li, X. Ma et al. Catenary optics for achromatic generation of perfect optical angular momentum. Sci. Adv., 1, e1500396(2015).

    [13] J. Chen, X. Ye, S. Gao et al. Planar wide-angle-imaging camera enabled by metalens array. Optica., 9, 431(2022).

    [14] F. Zhang, M. Pu, X. Li et al. Extreme‐angle silicon infrared optics enabled by streamlined surfaces. Adv. Mater., 33, 2008157(2021).

    [15] J. Cai, F. Zhang, M. Pu et al. Dispersion‐enabled symmetry switching of photonic angular‐momentum coupling. Adv. Funct. Mater., 33, 2212147(2023).

    [16] F. Zhang, Y. Guo, M. Pu et al. Meta-optics empowered vector visual cryptography for high security and rapid decryption. Nat. Commun., 14, 1946(2023).

    [17] X. Xie, M. Pu, J. Jin et al. Generalized Pancharatnam-Berry phase in rotationally symmetric meta-atoms. Phys. Rev. Lett., 126, 183902(2021).

    [18] M. Song, L. Feng, C. Huo et al. Versatile full-color nanopainting enabled by pixelated plasmonic metasurface. Nat. Nanotechol., 18, 71(2023).

    [19] X. Luo. Multiscale optical field manipulation via planar digital optics. ACS Photonics., 10, 2116(2023).

    [20] P. Lalanne, P. Chavel. Metalenses at visible wavelengths: past, present, perspectives. Laser Photonics Rev., 11, 1600295(2017).

    [21] S. Han, P. Pitchappa, W. Wang et al. Extended bound states in the continuum with symmetry‐broken terahertz dielectric metasurfaces. Adv. Opt. Mater., 9, 2002001(2021).

    [22] J. Wang, T. Weber, A. Aigner et al. Mirror-coupled plasmonic bound states in the continuum for tunable perfect absorption. Laser Photonics Rev., 17, 2300294(2023).

    [23] Y. Zhou, Z. Guo, X. Zhao et al. Dual‐quasi bound states in the continuum enabled plasmonic metasurfaces. Adv. Opt. Mater., 10, 2200965(2022).

    [24] A. Arbabi, Y. Horie, M. Bagheri et al. Dielectric metasurfaces for complete control of phase and polarization with subwavelength spatial resolution and high transmission. Nat. Nanotechnol., 10, 937(2015).

    [25] M. Decker, I. Staude, M. Falkner et al. High‐efficiency dielectric Huygens’ surfaces. Adv. Opt. Mater., 3, 813(2015).

    [26] B. Sain, C. Meier, T. Zentgraf. Nonlinear optics in all-dielectric nanoantennas and metasurfaces: a review. Adv. Photonics., 1, 024002(2019).

    [27] Y. Chen, M. Zhang, Z. Ding et al. Microfluidic refractive index sensor based on all-dielectric metasurfaces. Chin. J. Lasers, 49, 0613001(2022).

    [28] A. B. Evlyukhin, T. Fischer, C. Reinhardt et al. Optical theorem and multipole scattering of light by arbitrarily shaped nanoparticles. Phys. Rev. B., 94, 205434(2016).

    [29] C. W. Hsu, B. Zhen, J. Lee et al. Observation of trapped light within the radiation continuum. Nature, 499, 188(2013).

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

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

    [32] Y. Zhou, H. Zheng, I. I. Kravchenko et al. Flat optics for image differentiation. Nat. Photonics, 14, 316(2020).

    [33] Y. He, G. Guo, T. Feng et al. Toroidal dipole bound states in the continuum. Phys. Rev. B., 98, 161112(2018).

    [34] Y. Cai, Y. Huang, K. Zhu et al. Symmetric metasurface with dual band polarization-independent high-Q resonances governed by symmetry-protected BIC. Opt. Lett., 46, 4049(2021).

    [35] S. You, M. Zhou, L. Xu et al. Quasi-bound states in the continuum with a stable resonance wavelength in dimer dielectric metasurfaces. Nanophotonics, 12, 2051(2023).

    [36] T. Sang, Q. Mi, C. Yang et al. Achieving asymmetry parameter-insensitive resonant modes through relative shift–induced quasi-bound states in the continuum. Nanophotonics, 13, 1369(2024).

    [37] S. Yu, Y. Wang, Z. Gao et al. Dual-band polarization-insensitive toroidal dipole quasi-bound states in the continuum in a permittivity-asymmetric all-dielectric meta-surface. Opt. Express, 30, 4084(2022).

    [38] R. Berté, T. Weber, L. de Souza Menezes et al. Permittivity-asymmetric quasi-bound states in the continuum. Nano Lett., 23, 2651(2023).

    [39] T. Shi, Z. Deng, G. Geng et al. Planar chiral metasurfaces with maximal and tunable chiroptical response driven by bound states in the continuum. Nat. Commun., 13, 4111(2022).

    [40] Q. Duan, Y. Zeng, Y. Yin et al. Photonic crystal slabs with maximal chiroptical response empowered by bound states in the continuum. Photonics Res., 11, 1919(2023).

    [41] J. Fan, Z. Li, Z. Xue et al. Hybrid bound states in the continuum in terahertz metasurfaces. Opto-Electron. Sci., 2, 230006(2023).

    [42] Y. Zhou, M. Luo, X. Zhao et al. Asymmetric tetramer metasurface sensor governed by quasi-bound states in the continuum. Nanophotonics, 12, 1295(2023).

    [43] L. Yang, S. Yu, H. Li et al. Multiple Fano resonances excitation on all-dielectric nanohole arrays metasurfaces. Opt. Express, 29, 14905(2021).

    [44] B. Li, J. Yao, H. Zhu et al. Asymmetric excitations of toroidal dipole resonance and the magnetic dipole quasi-bound state in the continuum in an all-dielectric metasurface. Opt. Mater. Express, 11, 2359(2021).

    [45] M. Li, Q. Ma, A. Luo et al. Multiple toroidal dipole symmetry-protected bound states in the continuum in all-dielectric metasurfaces. Opt. Laser Technol., 154, 108252(2022).

    [46] Y. Huo, X. Zhang, M. Yan et al. Highly-sensitive sensor based on toroidal dipole governed by bound state in the continuum in dielectric non-coaxial core-shell cylinder. Opt. Express, 30, 19030(2022).

    [47] J. Gao, J. Liu, H. Yang et al. Anisotropic medium sensing controlled by bound states in the continuum in polarization-independent metasurfaces. Opt. Express, 31, 44703(2023).

    [48] L. Guo, Z. Zhang, Q. Xie et al. Toroidal dipole bound states in the continuum in all-dielectric metasurface for high-performance refractive index and temperature sensing. Appl. Surf. Sci., 615, 156408(2023).

    [49] S. Fan. Sharp asymmetric line shapes in side-coupled waveguide-cavity systems. Appl. Phys. Lett., 80, 908(2002).

    [50] B. Luk’Yanchuk, N. I. Zheludev, S. A. Maier et al. The Fano resonance in plasmonic nanostructures and metamaterials. Nat. Mater., 9, 707(2010).

    [51] I. M. White, X. Fan. On the performance quantification of resonant refractive index sensors. Opt. Express, 16, 1020(2008).

    [52] A. J. Ollanik, I. O. Oguntoye, G. Z. Hartfield et al. Highly sensitive, affordable, and adaptable refractive index sensing with silicon-based dielectric metasurfaces. Adv. Mater. Technol., 4, 1800567(2019).

    Xin Luo, Shilin Yu, Yingli Ha, Fei Zhang, Mingbo Pu, Qiong He, Yinghui Guo, Mingfeng Xu, Xiangang Luo, "Excitation of multiple bound states in the continuum by arbitrary selection of perturbation via a dielectric metasurface," Chin. Opt. Lett. 23, 023602 (2025)
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