Rayleigh, Lord. (1920). XXI. On resonant reflexion of sound from a perforated wall. The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science, 39(230), 225-233. doi:10.1080/14786440208636033
Sobnack, M. B., Tan, W. C., Wanstall, N. P., Preist, T. W., & Sambles, J. R. (1998). Stationary Surface Plasmons on a Zero-Order Metal Grating. Physical Review Letters, 80(25), 5667-5670. doi:10.1103/physrevlett.80.5667
López-Rios, T., Mendoza, D., García-Vidal, F. J., Sánchez-Dehesa, J., & Pannetier, B. (1998). Surface Shape Resonances in Lamellar Metallic Gratings. Physical Review Letters, 81(3), 665-668. doi:10.1103/physrevlett.81.665
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Rayleigh, Lord. (1920). XXI. On resonant reflexion of sound from a perforated wall. The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science, 39(230), 225-233. doi:10.1080/14786440208636033
Sobnack, M. B., Tan, W. C., Wanstall, N. P., Preist, T. W., & Sambles, J. R. (1998). Stationary Surface Plasmons on a Zero-Order Metal Grating. Physical Review Letters, 80(25), 5667-5670. doi:10.1103/physrevlett.80.5667
López-Rios, T., Mendoza, D., García-Vidal, F. J., Sánchez-Dehesa, J., & Pannetier, B. (1998). Surface Shape Resonances in Lamellar Metallic Gratings. Physical Review Letters, 81(3), 665-668. doi:10.1103/physrevlett.81.665
Porto, J. A., García-Vidal, F. J., & Pendry, J. B. (1999). Transmission Resonances on Metallic Gratings with Very Narrow Slits. Physical Review Letters, 83(14), 2845-2848. doi:10.1103/physrevlett.83.2845
Ebbesen, T. W., Lezec, H. J., Ghaemi, H. F., Thio, T., & Wolff, P. A. (1998). Extraordinary optical transmission through sub-wavelength hole arrays. Nature, 391(6668), 667-669. doi:10.1038/35570
Baida, F. I., & Van Labeke, D. (2003). Three-dimensional structures for enhanced transmission through a metallic film: Annular aperture arrays. Physical Review B, 67(15). doi:10.1103/physrevb.67.155314
Lockyear, M. J., Hibbins, A. P., Sambles, J. R., & Lawrence, C. R. (2005). Microwave Transmission through a Single Subwavelength Annular Aperture in a Metal Plate. Physical Review Letters, 94(19). doi:10.1103/physrevlett.94.193902
Lomakin, V., Li, S., & Michielssen, E. (2007). Transmission through and wave guidance on metal plates perforated by periodic arrays of through-holes of subwavelength coaxial cross-section. Microwave and Optical Technology Letters, 49(7), 1554-1558. doi:10.1002/mop.22484
Roberts, A. (2010). Beam transmission through hole arrays. Optics Express, 18(3), 2528. doi:10.1364/oe.18.002528
Baida, F. I., Belkhir, A., Arar, O., Barakat, E. H., Dahdah, J., Chemrouk, C., … Bernal, M.-P. (2010). Enhanced optical transmission by light coaxing: Mechanism of the TEM-mode excitation. Micron, 41(7), 742-745. doi:10.1016/j.micron.2010.06.009
White, J. S., Veronis, G., Yu, Z., Barnard, E. S., Chandran, A., Fan, S., & Brongersma, M. L. (2009). Extraordinary optical absorption through subwavelength slits. Optics Letters, 34(5), 686. doi:10.1364/ol.34.000686
Lansey, E., Hooper, I. R., Gollub, J. N., Hibbins, A. P., & Crouse, D. T. (2012). Light localization, photon sorting, and enhanced absorption in subwavelength cavity arrays. Optics Express, 20(22), 24226. doi:10.1364/oe.20.024226
Engheta, N., & Ziolkowski, R. W. (Eds.). (2006). Metamaterials. doi:10.1002/0471784192
Landy, N. I., Sajuyigbe, S., Mock, J. J., Smith, D. R., & Padilla, W. J. (2008). Perfect Metamaterial Absorber. Physical Review Letters, 100(20). doi:10.1103/physrevlett.100.207402
Tao, H., Landy, N. I., Bingham, C. M., Zhang, X., Averitt, R. D., & Padilla, W. J. (2008). A metamaterial absorber for the terahertz regime: design, fabrication and characterization. Optics Express, 16(10), 7181. doi:10.1364/oe.16.007181
Cheng, Y., Nie, Y., & Gong, R. (2013). A polarization-insensitive and omnidirectional broadband terahertz metamaterial absorber based on coplanar multi-squares films. Optics & Laser Technology, 48, 415-421. doi:10.1016/j.optlastec.2012.11.016
Baida, F. I., & Van Labeke, D. (2002). Light transmission by subwavelength annular aperture arrays in metallic films. Optics Communications, 209(1-3), 17-22. doi:10.1016/s0030-4018(02)01690-5
Haftel, M. I., Schlockermann, C., & Blumberg, G. (2006). Enhanced transmission with coaxial nanoapertures: Role of cylindrical surface plasmons. Physical Review B, 74(23). doi:10.1103/physrevb.74.235405
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