Singh, N. Choure, K.K. Kumari, M. Market research on free-standing phase correcting gain enhancement devices. Int. J. Sci. Eng. Res. (IJSER) 4( 7), 109–115 (2013). ISSN:2229-5518
Gagnon, N. Petosa, A. McNamara, D.A. Thin microwave phase-shifting surface (PSS) lens antenna made from square elements. IET Electron. Lett. 46 (5), 327–329 (2010) CrossRef
Waters, W.M. A digital half-tone image recording technique. Proc. IEEE 54 (2), 319–320 (1966) CrossRef
Gagnon, N. Phase shifting surface (PSS) and phase and amplitude shifting surface (PASS) for microwave applications, Ph.D. thesis. College of Ottawa, Canada (2011)
Gagnon, N. Petosa, A. McNamara, D. Phase hologram made up of square patches on the thin dielectric sheet. In: Proceedings from the Worldwide Symposium on Antennas and Propagation (ISAP 2008), Taipei, Taiwan, pp. 678–681 (2008)
Gagnon, N. Petosa, A. McNamara, D.A. thin microwave quasi-transparent phase- shifting surface (PSS). IEEE Trans. Antennas Propag. 58 (4), 1193–1201 (2010) CrossRef
Huang, J. Encinar, J.A. Reflectarray antennas. Wiley-IEEE Press, Hoboken (2007) CrossRef
Cwik, T. Frequency-selective screens. In: Balanis, C.A. (erectile dysfunction.) Modern Antenna Guide. Wiley, Hoboken (2008). Chap. 16
Sievenpiper, D.F. Artificial impedance surfaces for antennas. In: Balanis, C.A. (erectile dysfunction.) Modern Antenna Guide. Wiley, Hoboken (2008). Chap. 15
Bode, H.W. Network Analysis and Feedback Amplifier Design. Van Nostrand, New You are able to (1945)
Rorabaugh, C.B. Digital Filter Designer’s Guide: with C++ Algorithms. Mcgraw-hill, New You are able to (1997)
Pozar, D.M. Microwave Engineering, second edn. Wiley, New You are able to (1998)
Siisskind, C. Obstacle-type artificial dielectrics for microwaves.
J. Br. Inst. Radio Eng. Univ. Coll. 24. 49–60 (1951)
Sun, J.S. Chen, G.Y. Lin, C.H. Tiong, K.K. Chen, Y.D. Use of artificial dielectric material for any PIFA antenna. In: Progress in Electromagnetics Research Symposium, Hangzhou, China, pp. 24–28 (2008)
Kock, W.E. Metallic delay lenses. Bell Syst. Tech. J. 27. 58–82 (1948) CrossRef
Petosa, A. Ittipiboon, A. Thirakoune, S. Shadow blockage improvement utilizing a perforated dielectric fresnel lens. In: IEEE AP-S Worldwide Symposium, Columbus, vol. 4, pp. 514–517 (2003)
Brown, J. Jackson, W. The relative permittivity of tetragonal arrays of perfectly performing thin disks. Proc. IEEE—Part B: Radio Electron. Eng. 102 (1), 37–42 (1955)
Singh, N, Choure, K.K. Kochar, A. Singh, H. Research of value of metamaterial in antenna array elements design. Int. J. Adv. Res. Comput. Sci. Softw. Eng. (IJARCSSE) 4( 3), 237–241 (2014). ISSN:2277-128X
Veselago, V.G. The electrodynamics of drugs with concurrently negative values of and . Soviet Phys.-USPEKHI 10 (4), 509–514 (1968)
Pendry, J.B. et al. Magnetism from conductors, that has been enhanced non-straight line phenomena. IEEE Trans. Microw. Theor. Tech. 47 (11), 2075–2084 (1999) CrossRef
Munk, B.A. Metamaterials: Critique and Alternatives. Wiley, New You are able to (2009) CrossRef
Spielman, B.E. et al. Metamaterials face-off. IEEE Microw. Mag. 10 (3), 8–42 (2009) CrossRef
Sievenpiper, D. et al. High-impedance electromagnetic surfaces having a forbidden frequency band. IEEE Trans. Microw. Theor. Tech. 47 (11), 2059–2074 (1999) CrossRef

Munk, B.A. Frequency selective surfaces: theory and style. Wiley, New You are able to (2000) CrossRef
Sang, H.-H. Frequency selective wallpaper for mitigating indoor wireless interference, Ph.D. thesis. College of Auckland (2006)
Reed, J.A. Dissertation proposal: frequency selective surfaces with multiple periodic elements, Ph.D. thesis. College of Texas at Dallas (1997)
Birbir, F. Shaker, J. Antar, Y.M.M. Chebishev bandpass spatial filter made up of strip gratings. IEEE Trans. Antennas Propag. 56 (12), 3707–3713 (2008) CrossRef
Bayatpur, F. Metamaterial-inspired frequency-selective surfaces, Ph.D. thesis College of Michigan (2009)