• Advanced Photonics Nexus
  • Vol. 2, Issue 2, 026003 (2023)
Shaun Lung1, Jihua Zhang1、*, Kai Wang2, and Andrey A. Sukhorukov1
Author Affiliations
  • 1The Australian National University, Research School of Physics, Centre of Excellence for Transformative Meta-Optical Systems (TMOS), Department of Electronic Materials Engineering, Canberra, Australian Capital Territory, Australia
  • 2McGill University, Department of Physics, Montréal, Quebec, Canada
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    DOI: 10.1117/1.APN.2.2.026003 Cite this Article Set citation alerts
    Shaun Lung, Jihua Zhang, Kai Wang, Andrey A. Sukhorukov. Real-time monitoring of polarization state deviations with dielectric metasurfaces[J]. Advanced Photonics Nexus, 2023, 2(2): 026003 Copy Citation Text show less
    References

    [1] Y. Minami, E. Komatsu. New extraction of the cosmic birefringence from the Planck 2018 polarization data. Phys. Rev. Lett., 125, 221301(2020).

    [2] Z. W. Zhan et al. Optical polarization-based seismic and water wave sensing on transoceanic cables. Science, 371, 931-936(2021).

    [3] M. R. Antonelli et al. Mueller matrix imaging of human colon tissue for cancer diagnostics: how Monte Carlo modeling can help in the interpretation of experimental data. Opt. Express, 18, 10200-10208(2010).

    [4] M. Duda et al. Polarization of myosin II refines tissue material properties to buffer mechanical stress. Dev. Cell, 48, 245-260(2019).

    [5] D. F. V. James et al. Measurement of qubits. Phys. Rev. A, 64, 052312(2001).

    [6] H. Z. Liu et al. Enhanced high-harmonic generation from an all-dielectric metasurface. Nat. Phys., 14, 1006-1010(2018).

    [7] H. G. Tompkins, J. N. Hilfiker. Spectroscopic Ellipsometry: Practical Application to Thin Film Characterization(2015).

    [8] H. G. Berry, G. Gabrielse, A. E. Livingston. Measurement of Stokes parameters of light. Appl. Opt., 16, 3200-3205(1977).

    [9] M. Chekhova, P. Banzer. Polarization of Light in Classical, Quantum, and Nonlinear Optics(2021).

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

    [11] Y. Q. Hu et al. All-dielectric metasurfaces for polarization manipulation: principles and emerging applications. Nanophotonics, 9, 3755-3780(2020).

    [12] T. Stav et al. Quantum entanglement of the spin and orbital angular momentum of photons using metamaterials. Science, 361, 1101-1104(2018).

    [13] K. Wang et al. Quantum metasurface for multiphoton interference and state reconstruction. Science, 361, 1104-1108(2018).

    [14] C. L. Zheng et al. All-dielectric metasurface for manipulating the superpositions of orbital angular momentum via spin-decoupling. Adv. Opt. Mater., 9, 2002007(2021).

    [15] A. Pors, M. G. Nielsen, S. I. Bozhevolnyi. Plasmonic metagratings for simultaneous determination of Stokes parameters. Optica, 2, 716-723(2015).

    [16] J. P. B. Mueller, K. Leosson, F. Capasso. Ultracompact metasurface in-line polarimeter. Optica, 3, 42-47(2016).

    [17] E. Arbabi et al. Full-Stokes imaging polarimetry using dielectric metasurfaces. ACS Photonics, 5, 3132-3140(2018).

    [18] Y. Intaravanne, X. Z. Chen. Recent advances in optical metasurfaces for polarization detection and engineered polarization profiles. Nanophotonics, 9, 1003-1014(2020).

    [19] Y. D. Shah et al. An all-dielectric metasurface polarimeter. ACS Photonics, 9, 3245-3252(2022).

    [20] A. Cerjan, S. H. Fan. Achieving arbitrary control over pairs of polarization states using complex birefringent metamaterials. Phys. Rev. Lett., 118, 253902(2017).

    [21] S. Lung et al. Complex-birefringent dielectric metasurfaces for arbitrary polarization-pair transformations. ACS Photonics, 7, 3015-3022(2020).

    [22] A. Arbabi, A. Faraon. Fundamental limits of ultrathin metasurfaces. Sci. Rep., 7, 43722(2017).

    [23] A. S. Solntsev, G. S. Agarwal, Y. Y. Kivshar. Metasurfaces for quantum photonics. Nat. Photonics, 15, 327-336(2021).

    [24] S. V. Zhukovsky, A. V. Novitsky, V. M. Galynsky. Elliptical dichroism: operating principle of planar chiral metamaterials. Opt. Lett., 34, 1988-1990(2009).

    [25] L. A. Warning et al. Nanophotonic approaches for chirality sensing. ACS Nano, 15, 15538-15566(2021).

    [26] P. Lalanne. Improved formulation of the coupled-wave method for two-dimensional gratings. J. Opt. Soc. Am. A, 14, 1592-1598(1997).

    [27] M. M. R. Elsawy et al. Numerical optimization methods for metasurfaces. Laser Photonics Rev., 14, 1900445(2020).

    [28] H. S. Khaliq et al. Giant chiro-optical responses in multipolar-resonances-based single-layer dielectric metasurfaces. Photonics Res., 9, 1667-1674(2021).

    [29] S. Nechayev et al. Substrate-induced chirality in an individual nanostructure. ACS Photonics, 6, 1876-1881(2019).

    [30] J. Kim et al. Chiroptical metasurfaces: principles, classification, and applications. Sensors, 21, 4381(2021).

    [31] R. C. Devlin et al. Broadband high-efficiency dielectric metasurfaces for the visible spectrum. Proc. Natl. Acad. Sci. U. S. A., 113, 10473-10478(2016).

    [32] A. Y. Zhu et al. Giant intrinsic chiro-optical activity in planar dielectric nanostructures. Light Sci. Appl., 7, 17158(2018).

    [33] Z. J. Shi et al. Continuous angle-tunable birefringence with freeform metasurfaces for arbitrary polarization conversion. Sci. Adv., 6, eaba3367(2020).

    [34] J. J. Hu et al. Tunable nanophotonics. Nanophotonics, 11, 3741-3743(2022).

    [35] A. Komar et al. Dynamic beam switching by liquid crystal tunable dielectric metasurfaces. ACS Photonics, 5, 1742-1748(2018).

    [36] A. Barreda et al. Tuning and switching effects of quasi-BIC states combining phase change materials with all-dielectric metasurfaces. Opt. Mater. Express, 12, 3132-3142(2022).

    [37] P. Moitra et al. Programmable wavefront control in the visible spectrum using low-loss chalcogenide phase change metasurfaces. Adv. Mater., 2205367(2022).

    [38] WPH05M-1550 mounted multi-order wave plates, Part specification(2022).

    [39] J. Lekner. Polarization of tightly focused laser beams. J. Opt. A-Pure Appl. Opt., 5, 6(2003).

    [40] N. H. Lindner, D. R. Terno. The effect of focusing on polarization qubits. J. Mod. Opt., 52, 1177-1188(2005).

    Shaun Lung, Jihua Zhang, Kai Wang, Andrey A. Sukhorukov. Real-time monitoring of polarization state deviations with dielectric metasurfaces[J]. Advanced Photonics Nexus, 2023, 2(2): 026003
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