• Photonics Research
  • Vol. 11, Issue 12, 2210 (2023)
Liye Li1, Yifan Ouyang2, Lijun Ma1, Hongshun Sun1, Yusa Chen1, Meizhang Wu3、4, Zhimei Qi5、6, and Wengang Wu1、7、8、*
Author Affiliations
  • 1National Key Laboratory of Science and Technology on Micro/Nano Fabrication, School of Integrated Circuits, Peking University, Beijing 100871, China
  • 2School of Electronics, Peking University, Beijing 100871, China
  • 3School of Automation, University of Science and Technology Beijing, Beijing 100083, China
  • 4School of Instrument Science and Opto-Electronics Engineering, Beijing Information Science and Technology University, Beijing 100096, China
  • 5State Key Laboratory of Transducer Technology, Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100190, China
  • 6University of Chinese Academy of Sciences, Beijing 100049, China
  • 7Beijing Advanced Innovation Center for Integrated Circuits, Beijing 100871, China
  • 8Frontiers Science Center for Nano-optoelectronics, Peking University, Beijing 100871, China
  • show less
    DOI: 10.1364/PRJ.502199 Cite this Article Set citation alerts
    Liye Li, Yifan Ouyang, Lijun Ma, Hongshun Sun, Yusa Chen, Meizhang Wu, Zhimei Qi, Wengang Wu. Reflection-type surface lattice resonances in all-metal metasurfaces for refractive index sensing[J]. Photonics Research, 2023, 11(12): 2210 Copy Citation Text show less
    References

    [1] Y. Xu, P. Bai, X. Zhou, Y. Akimov, C. E. Png, L. Ang, W. Knoll, L. Wu. Optical refractive index sensors with plasmonic and photonic structures: promising and inconvenient truth. Adv. Opt. Mater., 7, 1801433(2019).

    [2] J. Qin, S. Jiang, Z. Wang, X. Cheng, B. Li, Y. Shi, D. P. Tsai, A. Q. Liu, W. Huang, W. Zhu. Metasurface micro/nano-optical sensors: principles and applications. ACS Nano, 16, 11598-11618(2022).

    [3] N. Yu, F. Capasso. Flat optics with designer metasurface. Nat. Mater., 13, 139-150(2014).

    [4] V. G. Kravets, F. Schedin, R. Jalil, L. Britnell, R. V. Gorbachev, D. Ansell, B. Thackray, K. S. Novoselov, A. K. Geim, A. V. Kabashin, A. N. Grigorenko. Singular phase nano-optics in plasmonic metamaterials for label-free single-molecule detection. Nat. Mater., 12, 304-309(2013).

    [5] B. Wang, P. Yu, W. Wang, X. Zhang, H. Kuo, H. Xu, Z. Wang. High-Q plasmonic resonances: fundamentals and applications. Adv. Opt. Mater., 9, 2001520(2021).

    [6] P. Genevet, F. Capasso, F. Aieta, M. Khorasaninejad, R. Devlin. Recent advances in planar optics: from plasmonic to dielectric metasurfaces. Optica, 4, 139-152(2017).

    [7] I. M. Pryce, Y. A. Kelaita, K. Aydin, H. A. Atwater. Compliant metamaterials for resonantly enhanced infrared absorption spectroscopy and refractive index sensing. ACS Nano, 5, 8167-8174(2011).

    [8] J. Hu, S. Bandyopadhyay, Y. Liu, L. Shao. A review on metasurface: from principle to smart metadevices. Front. Phys., 8, 586087(2021).

    [9] F. Ding, Y. Yang, R. A. Deshpande, S. I. Bozhevolnyi. A review of gap-surface plasmon metasurfaces: fundamentals and applications. Nanophotonics, 7, 1129-1156(2018).

    [10] F. Yang, Q. Chen, J. Wang, J. J. Chang, W. Dong, W. Cao, S. Ye, L. Shi, Z. Nie. Fabrication of centimeter-scale plasmonic nanoparticle arrays with ultranarrow surface lattice resonances. ACS Nano, 17, 725-734(2023).

    [11] V. G. Kravets, A. V. Kabashin, W. L. Barnes, A. N. Grigorenko. Plasmonic surface lattice resonances: a review of properties and applications. Chem. Rev., 118, 5912-5951(2018).

    [12] F. Verdelli, J. J. P. M. Schulpen, A. Baldi, J. G. Rivas. Chasing vibro-polariton fingerprints in infrared and Raman spectra using surface lattice resonances on extended metasurfaces. J. Phys. Chem. C, 126, 7143-7151(2022).

    [13] P. Offermans, M. C. Schaafsma, S. R. K. Rodriguez, Y. Zhang, M. Crego-Calama, S. H. Brongersma, J. G. Rivas. Universal scaling of the figure of merit of plasmonic sensors. ACS Nano, 5, 5151-5157(2011).

    [14] H. Gao, J. M. McMahon, M. H. Lee, J. Henzie, S. K. Gray, G. C. Schatz, T. W. Odom. Rayleigh anomaly-surface plasmon polariton resonances in palladium and gold subwavelength hole arrays. Opt. Express, 17, 2334-2340(2009).

    [15] D. Khlopin, F. Laux, W. P. Wardley, J. Martin, G. A. Wurtz, J. Plain, N. Bonod, A. V. Zayats, W. Dickson, D. Gérard. Lattice modes and plasmonic linewidth engineering in gold and aluminum nanoparticle arrays. J. Opt. Soc. Am. B., 34, 691-700(2017).

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

    [17] X. Yang, L. Xiong, Y. Lu, G. Li. Exceptionally narrow plasmonic surface lattice resonances in gold nanohemisphere array. J. Phys. D, 53, 465109(2020).

    [18] A. D. Humphrey, W. L. Barnes. Plasmonic surface lattice resonances on arrays of different lattice symmetry. Phys. Rev. B, 90, 075404(2014).

    [19] A. Yanga, A. J. Hryna, M. R. Bourgeoisb, W. Leea, J. Hua, G. C. Schatzb, T. W. Odom. Programmable and reversible plasmon mode engineering. Proc. Natl. Acad. Sci. USA, 113, 14201-14206(2016).

    [20] Q. Le-Van, E. Zoethout, E. Geluk, M. Ramezani, M. Berghuis, J. G. Rivas. Enhanced quality factors of surface lattice resonances in plasmonic arrays of nanoparticles. Adv. Opt. Mater., 7, 1801451(2019).

    [21] D. Wang, A. Yang, A. J. Hryn, G. C. Schatz, T. W. Odom. Superlattice plasmons in hierarchical au nanoparticle arrays. ACS Photon., 2, 1789-1794(2015).

    [22] Z. Li, S. Butun, K. Aidin. Ultranarrow band absorbers based on surface lattice resonances in nanostructured metal surfaces. ACS Nano, 8, 8242-8248(2014).

    [23] A. Yang, T. B. Hoang, M. Dridi, C. Deeb, M. H. Mikkelsen, G. C. Schatz, T. W. Odom. Real-time tunable lasing from plasmonic nanocavity arrays. Nat. Commun., 6, 6939(2015).

    [24] R. Czaplicki, A. Kiviniemi, J. Laukkanen, J. Lehtolahti, M. Kuittinen, M. Kauranen. Surface lattice resonances in second-harmonic generation from metasurfaces. Opt. Lett., 41, 2684-2687(2016).

    [25] M. Miyata, H. Hatada, J. Takahara. Full-color subwavelength printing with gap-plasmonic optical antennas. Nano Lett., 16, 3166-3172(2016).

    [26] Z. Li, W. Wang, D. Rosenmann, D. A. Czaplewski, X. Yang, J. Gao. All-metal structural color printing based on aluminum plasmonic metasurfaces. Opt. Express, 24, 20472-20480(2016).

    [27] Y. Shen, J. Zhou, T. Liu, Y. Tao, R. Jiang, M. Liu, G. Xiao, J. Zhu, Z. Zhou, X. Wang, C. Jin, J. Wang. Plasmonic gold mushroom arrays with refractive index sensing figures of merit approaching the theoretical limit. Nat. Commun., 4, 2381(2013).

    [28] http://www.ideaoptics.com/. http://www.ideaoptics.com/

    [29] J. Yao, A. P. Le, S. K. Gray, J. S. Moore, J. A. Rogers, R. G. Nuzzo. Functional nanostructured plasmonic materials. Adv. Mater., 22, 1102-1110(2010).

    [30] Q. T. Trinh, S. K. Nguyen, D. H. Nguyen, G. K. Tran, V. H. Le, H. S. Nguyen, Q. L. Van. Coexistence of surface lattice resonances and bound states in the continuum in a plasmonic lattice. Opt. Lett., 47, 1510-1513(2022).

    [31] V. E. Babicheva, A. B. Evlyukhin. Resonant lattice Kerker effect in metasurfaces with electric and magnetic optical responses. Laser Photon. Rev., 11, 1700132(2017).

    [32] C. Cherqui, M. R. Bourgeois, D. Wang, G. C. Schatz. Plasmonic surface lattice resonances: theory and computation. Acc. Chem. Res., 52, 2548-2558(2019).

    [33] B. R. Lu, C. Xu, J. Liao, J. Liu, Y. Chen. High-resolution plasmonic structural colors from nanohole arrays with bottom metal disks. Opt. Lett., 41, 1400-1403(2016).

    [34] Y. Chu, E. Schonbrun, T. Yang, K. B. Crozier. Experimental observation of narrow surface plasmon resonances in gold nanoparticle arrays. Appl. Phys. Lett., 93, 181108(2008).

    [35] T. Aoudjit, A. Horrer, S. Kostcheev, R. Bachelot, J. Plain, D. Gérard. Photochemical imaging of near-field and dissymmetry factor in chiral nanostructures. Adv. Opt. Mater., 11, 2203015(2023).

    [36] J. Wang, J. Zheng, K. H. Li, J. Wang, H. Q. Lin, L. Shao. Excitation of chiral cavity plasmon resonances in film-coupled chiral Au nanoparticles. Adv. Opt. Mater., 11, 2202865(2023).

    [37] V. G. Kravets, F. Schedin, A. V. Kabashin, A. N. Grigorenko. Sensitivity of collective plasmon modes of gold nanoresonators to local environment. Opt. Lett., 35, 956-958(2010).

    [38] H. H. Hsiao, Y. C. Hsu, A. Y. Liu, J. C. Hsieh, Y. H. Lin. Ultrasensitive refractive index sensing based on the quasi-bound states in the continuum of all-dielectric metasurfaces. Adv. Opt. Mater., 10, 2200812(2022).

    [39] M. Vlk, A. Datta, S. Alberti, H. D. Yallew, V. Mittal, G. S. Murugan, J. Jágerská. Extraordinary vanescent field confinement waveguide sensor for mid-infrared trace gas spectroscopy. Light Sci. Appl., 10, 26(2021).

    Liye Li, Yifan Ouyang, Lijun Ma, Hongshun Sun, Yusa Chen, Meizhang Wu, Zhimei Qi, Wengang Wu. Reflection-type surface lattice resonances in all-metal metasurfaces for refractive index sensing[J]. Photonics Research, 2023, 11(12): 2210
    Download Citation