Additional Information:
Conference code: 162897 Export Date: 14 October 2020 CODEN: PSISD Correspondence Address: Romain, X.; Department of Engineering, Lancaster UniversityUnited Kingdom; email: x.romain@lancaster.ac.uk Funding details: Engineering and Physical Sciences Research Council, EPSRC, EP/S019383/1, EP/P021859/1 Funding text 1: X. R and R. D acknowledge financial support from the Engineering and Physical Sciences Research Council (EPSRC), Grant No. EP/P021859/1 and Grant No EP/S019383/1. References: Fano, U., Effiects of configuration interaction on intensities and phase shifts (1961) Physical Review, 124 (6), pp. 1866-1878; Limonov, M.F., Rybin, M.V., Poddubny, A.N., Kivshar, Y.S., Fano resonances in photonics (2017) Nature Photonics, 11, pp. 543-554. , Sept; Singh, R., Cao, W., Al-Naib, I., Cong, L., Withayachumnankul, W., Zhang, W., Ultrasensitive ter-ahertz sensing with high-Q Fano resonances in metasurfaces (2014) Applied Physics Letters, 105, p. 171101. , Oct; Fan, S., Sharp asymmetric line shapes in side-coupled waveguide-cavity systems (2002) Applied Physics Let-ters, 80, pp. 908-910. , Feb; Fan, S., Joannopoulos, J.D., Analysis of guided resonances in photonic crystal slabs (2002) Physical Review B, p. 65. , June; Fan, S., Suh, W., Joannopoulos, J., Temporal coupled-mode theory for the Fano resonance in optical resonators (2003) Josa A; Lee, H.-T., Poon, A.W., Fano resonances in prism-coupled square micropillars (2004) Optics Letters, 29 (1), pp. 5-7; Goffaux, C., Sanchez-Dehesa, J., Yeyati, A.L., Lambin, P., Khelif, A., Vasseur, J.O., Djafari-Rouhani, B., Evidence of fano-like interference phenomena in locally resonant materials (2002) Physical Review Let-ters, p. 88. , May; Fedotov, V.A., Rose, M., Prosvirnin, S.L., Papasimakis, N., Zheludev, N.I., Sharp trapped-mode resonances in planar metamaterials with a broken structural symmetry (2007) Physical Review Letters, p. 99. , Oct; Singh, R., Rockstuhl, C., Lederer, F., Zhang, W., Coupling between a dark and a bright eigenmode in a terahertz metamaterial (2009) Physical Review B, p. 79. , Feb; Yang, L., Wang, J., Yang, L.-Z., Hu, Z.-D., Wu, X., Zheng, G., Characteristics of multiple Fano resonances in waveguide-coupled surface plasmon resonance sensors based on waveguide theory (2018) Scientific Reports, p. 8. , Dec; Fu, H., Li, S., Wang, Y., Song, G., Zhang, P., Wang, L., Yu, L., Independently tunable ultrasharp double fano resonances in coupled plasmonic resonator system (2018) Ieee Photonics Journal, 10, pp. 1-9. , Feb; Zhou, C., Liu, G., Ban, G., Li, S., Huang, Q., Xia, J., Wang, Y., Zhan, M., Tunable fano resonator using multilayer graphene in the near-infrared region (2018) Applied Physics Letters, 112, p. 101904. , Mar; Ebbesen, T.W., Lezec, H.J., Ghaemi, H.F., Thio, T., AndWolff, P.A., Extraordinary optical transmission through sub-wavelength hole arrays (1998) Nature, 391, pp. 667-669. , Feb; Smith, D.R., Pendry, J.B., Wiltshire, M.C.K., Metamaterials and negative refractive index (2004) Science, 305 (5685), pp. 788-792; Landy, N.I., Sajuyigbe, S., Mock, J.J., Smith, D.R., Padilla, W.J., Perfect metamaterial absorber (2008) Physical Review Letters, p. 100. , May; Cheng, H., Liu, Z., Chen, S., Tian, J., Emergent functionality and controllability in few-layer metasurfaces (2015) Advanced Materials, 27, pp. 5410-5421. , Sept; Liu, N., Guo, H., Fu, L., Kaiser, S., Schweizer, H., Giessen, H., Three-dimensional photonic metama-terials at optical frequencies (2008) Nature Materials, 7, pp. 31-37. , Jan; Boutria, M., Oussaid, R., Van Labeke, D., Baida, F.I., Tunable artificial chirality with extraordinary transmission metamaterials (2012) Physical Review B, p. 86. , Oct; Pfeiffer, C., Zhang, C., Ray, V., Guo, L.J., Grbic, A., High performance bianisotropic metasurfaces: Asymmetric transmission of light (2014) Physical Review Letters, p. 113. , July; Fan, R.-H., Zhou, Y., Ren, X.-P., Peng, R.-W., Jiang, S.-C., Xu, D.-H., Xiong, X., Wang, M., Freely tunable broadband polarization rotator for terahertz waves (2015) Advanced Materials, 27, pp. 1201-1206. , Feb; Romain, X., Baida, F.I., Boyer, P., Spectrally tunable linear polarization rotation using stacked metallic metamaterials (2017) Journal of Optics, 19, p. 085102. , Aug; Ismail, N., Kores, C.C., Geskus, D., Pollnau, M., Fabry-Perot resonator: Spectral line shapes, generic and related Airy distributions, linewidths, finesses, and performance at low or frequency-dependent reffec-tivity (2016) Optics Express, 24, p. 16366. , July; Boyer, P., Jones matrices of perfectly conducting metallic polarizers (2014) Josa A, 31, p. 1226. , June; Doyle, W.M., White, M.B., Properties of an anisotropic Fabry-Perot resonator (1965) Josa, 55 (10), pp. 1221-1225; Mamaev, Y.A., Khandokhin, P.A., Nonorthogonal polarisation eigenstates in anisotropic cavities (2011) Quantum Electronics, 41, pp. 571-576. , June; Silverman, M.P., Badoz, J., Interferometric enhancement of chiral asymmetries: Ellipsometry with an optically active Fabry-Perot interferometer (1994) Josa A, 11 (6), pp. 1894-1917; Timofeev, I.V., Gunyakov, V.A., Sutormin, V.S., Myslivets, S.A., Arkhipkin, V.G., Vetrov, S.Y., Lee, W., Zyryanov, V.Y., Geometric phase and o-mode blueshift in a chiral anisotropic medium inside a Fabry-Perot cavity (2015) Physical Review E, p. 92. , Nov; Romain, X., Baida, F., Boyer, P., Extended Malus law with terahertz metallic metamaterials for sensitive detection with giant tunable quality factor (2016) Physical Review B, p. 94. , July; https://www.purewavepolarizers.com/wire-grid-polarizers/10-micron-wire-far-ir-thz-polarizer; https://www.menlosystems.com/products/thz-time-domain-solutions/terak15-terahertz-spectrometer/; Kindness, S.J., Almond, N.W., Wei, B., Wallis, R., Michailow, W., Kamboj, V.S., Braeuninger-Weimer, P., Degl'Innocenti, R., Active control of electromagneti-cally induced transparency in a terahertz metamaterial array with graphene for continuous resonance frequency tuning (2018) Advanced Optical Materials, 6, p. 1800570. , Nov