• Photonics Research
  • Vol. 11, Issue 7, 1154 (2023)
Zhibiao Zhu1、†, Zhe Qin1、†, He Wang1, Lixin Jiang1, Yongfeng Li1、*, Wenjie Wang1, Hongya Chen1, Jiafu Wang1, Yongqiang Pang2, and Shaobo Qu1
Author Affiliations
  • 1Shaanxi Key Laboratory of Artificially-Structured Functional Materials and Devices, Air Force Engineering University, Xi’an 710051, China
  • 2School of Electronic Science and Engineering, Xi’an Jiaotong University, Xi’an 710049, China
  • show less
    DOI: 10.1364/PRJ.468496 Cite this Article Set citation alerts
    Zhibiao Zhu, Zhe Qin, He Wang, Lixin Jiang, Yongfeng Li, Wenjie Wang, Hongya Chen, Jiafu Wang, Yongqiang Pang, Shaobo Qu. Switchable chiral mirror based on PIN diodes[J]. Photonics Research, 2023, 11(7): 1154 Copy Citation Text show less
    References

    [1] L. D. Barron. Molecular Light Scattering and Optical Activity(2004).

    [2] V. A. Fedotov, P. L. Mladyonov, S. L. Prosvirnin, A. V. Rogacheva, Y. Chen, N. I. Zheludev. Asymmetric propagation of electromagnetic waves through a planar chiral structure. Phys. Rev. Lett., 97, 167401(2006).

    [3] R. Singh, E. Plum, C. Menzel, C. Rockstuhl, A. K. Azad, R. A. Cheville, F. Lederer, W. Zhang, N. I. Zheludev. Terahertz metamaterial with asymmetric transmission. Phys. Rev. B, 80, 153104(2009).

    [4] A. S. Schwanecke, V. A. Fedotov, V. V. Khardikov, S. L. Prosvirnin, Y. Chen, N. I. Zheludev. Nanostructured metal film with asymmetric optical transmission. Nano Lett., 8, 2940-2943(2008).

    [5] H. Y. Chen, J. F. Wang, H. Ma, S. B. Qu, Z. Xu, A. X. Zhang, M. B. Yan, Y. F. Li. Ultra-wideband polarization conversion metasurfaces based on multiple plasmon resonances. J. Appl. Phys., 115, 154504(2014).

    [6] M. Feng, J. Wang, H. Ma, W. Mo, H. Ye, S. Qu. Broadband polarization rotator based on multi-order plasmon resonances and high impedance surfaces. J. Appl. Phys., 114, 074508(2013).

    [7] Y. Li, J. Zhang, S. Qu, J. Wang, L. Zheng, Y. Pang, Z. Xu, A. Zhang. Achieving wide-band linear-to-circular polarization conversion using ultra-thin bi-layered metasurfaces. J. Appl. Phys., 117, 044501(2015).

    [8] Z. Wang, H. Jia, K. Yao, W. Cai, H. Chen, Y. Liu. Circular dichroism metamirrors with near-perfect extinction. ACS Photon., 3, 2096-2101(2016).

    [9] H. Wang, Z. Qin, L. Huang, Y. Li, R. Zhao, H. Zhou, H. He, J. Zhang, S. Qu. Metasurface with dynamic chiral meta-atoms for spin multiplexing hologram and low observable reflection. PhotoniX, 3, 10(2022).

    [10] M. Li, J. Song, F. Wu. Ultra-compact chiral metamaterial with negative refractive index based on miniaturized structure. J. Magn. Magn. Mater., 426, 150-154(2017).

    [11] J. Dong, J. Zhou, T. Koschny, C. Soukoulis. Bi-layer cross chiral structure with strong optical activity and negative refractive index. Opt. Express, 17, 14172-14179(2009).

    [12] R. Jie, H. Jing, S. Li, Y. Xiao. Dual-band circular polarizers based on a planar chiral metamaterial structure. IEEE Antennas Wireless Propag. Lett., 18, 2587-2591(2019).

    [13] Y. Jing, Y. Li, J. Zhang, J. Wang, M. Feng, T. Qiu, H. Wang, Y. Han, H. Ma, S. Qu. Achieving circular-to-linear polarization conversion and beam deflection simultaneously using anisotropic coding metasurfaces. Sci. Rep., 9, 12264(2019).

    [14] O. M. Ramahi, T. S. Almoneef, M. Alshareef, M. S. Boybay. Metamaterial particles for electromagnetic energy harvesting. Appl. Phys. Lett., 101, 173903(2012).

    [15] A. Pors, M. G. Nielsen, R. L. Eriksen, S. I. Bozhevolnyi. Broadband focusing flat mirrors based on plasmonic gradient metasurfaces. Nano Lett., 13, 829-834(2013).

    [16] A. V. Krasavin, A. S. Schwanecke, N. I. Zheludev. Extraordinary properties of light transmission through a small chiral hole in a metallic screen. J. Opt. A, 8, S98-S105(2006).

    [17] M. Reichelt, S. W. Koch, A. V. Krasavin, J. V. Moloney, A. S. Schwanecke, T. Stroucken, E. M. Wright, N. I. Zheludev. Broken enantiomeric symmetry for electromagnetic waves interacting with planar chiral nanostructures. Appl. Phys. B, 84, 97-101(2006).

    [18] R. Zhao, L. Zhang, J. Zhou, Th. Koschny, C. M. Soukoulis. Conjugated gammadion chiral metamaterial with uniaxial optical activity and negative refractive index. Phys. Rev. B., 83, 035105(2011).

    [19] E. Plum, N. I. Zheludev. Chiral mirrors. Appl. Phys. Lett., 106, 221901(2015).

    [20] Q. Zheng, Y. Li, J. Zhang, H. Ma, J. Wang, Y. Pang, Y. Han, S. Sui, Y. Shen, H. Chen, S. Qu. Wideband, wide-angle coding phase gradient metasurfaces based on Pancharatnam-Berry phase. Sci. Rep., 7, 43543(2017).

    [21] H. M. Xu, G. M. Wang, M. Q. Qi, T. Cai, T. J. Cui. Compact dual-band circular polarizer using twisted Hilbert-shaped chiral metamaterial. Opt. Express, 21, 24912-24921(2013).

    [22] V. A. Fedotov, A. S. Schwanecke, N. I. Zheludev, V. V. Khardikov, S. L. Prosvirnin. Asymmetric transmission of light and enantiomerically sensitive plasmon resonance in planar chiral nanostructures. Nano Lett., 7, 1996-1999(2007).

    [23] C. Wu, N. Arju, G. Kelp, J. A. Fan, J. Dominguez, E. Gonzales, E. Tutuc, I. Brener, G. Shvets. Spectrally selective chiral silicon metasurfaces based on infrared Fano resonances. Nat. Commun., 5, 3892(2014).

    [24] J. Hu, X. Zhao, R. Li, A. Zhu, L. Chen, Y. Lin, B. Cao, X. Zhu, C. Wang. Broadband circularly polarizing dichroism with high efficient plasmonic helical surface. Opt. Express, 24, 11023-11032(2016).

    [25] M. Schäferling, X. Yin, N. Engheta, H. Giessen. Helical plasmonic nanostructures as prototypical chiral near-field sources. ACS Photon., 1, 530-537(2014).

    [26] Y. Yu, Z. Yang, S. Li, M. Zhao. Higher extinction ratio circular polarizers with hetero-structured double-helical metamaterials. Opt. Express, 19, 10886-10894(2011).

    [27] Z. Fan, A. O. Govorov. Plasmonic circular dichroism of chiral metal nanoparticle assemblies. Nano Lett., 10, 2580-2587(2010).

    [28] L. Wu, Z. Yang, Y. Cheng, Z. Lu, P. Zhang, M. Zhao, R. Gong, X. Yuan, Y. Zheng, J. Duan. Electromagnetic manifestation of chirality in layer-by-layer chiral metamaterials. Opt. Express, 21, 5239-5246(2013).

    [29] X. Yin, M. Schaferling, B. Metzger, H. Giessen. Interpreting chiral nanophotonic spectra: the plasmonic Born–Kuhn model. Nano Lett., 13, 6238-6243(2013).

    [30] M. Feng, X. Chen, Y. Li, Q. Zheng, Y. Han, J. Zhang, J. Wang, Y. Hou, Z. Liu, X. Li, C. Wang, J. Jing, H. Ma, S. Qu. Circularly polarized spin-selectivity absorbing coding phase gradient metasurface for RCS reduction. Adv. Theory Simul., 3, 1900217(2020).

    [31] . NXP Semiconductors(2020).

    [32] Y. Li, Y. Pang, J. Wang, Q. Zheng, L. Zheng, M. Feng, Y. Jing, J. Zhang, T. Cui, S. Qu. Bispectral circular dichroic coding metasurfaces. Ann. Phys., 532, 1900496(2020).

    Zhibiao Zhu, Zhe Qin, He Wang, Lixin Jiang, Yongfeng Li, Wenjie Wang, Hongya Chen, Jiafu Wang, Yongqiang Pang, Shaobo Qu. Switchable chiral mirror based on PIN diodes[J]. Photonics Research, 2023, 11(7): 1154
    Download Citation