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Reseach Article

Review of Metamaterials in Microstrip Technology for Filter Applications

by Swati Jindal, Jigyasa Sharma
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 54 - Number 3
Year of Publication: 2012
Authors: Swati Jindal, Jigyasa Sharma
10.5120/8548-2108

Swati Jindal, Jigyasa Sharma . Review of Metamaterials in Microstrip Technology for Filter Applications. International Journal of Computer Applications. 54, 3 ( September 2012), 48-54. DOI=10.5120/8548-2108

@article{ 10.5120/8548-2108,
author = { Swati Jindal, Jigyasa Sharma },
title = { Review of Metamaterials in Microstrip Technology for Filter Applications },
journal = { International Journal of Computer Applications },
issue_date = { September 2012 },
volume = { 54 },
number = { 3 },
month = { September },
year = { 2012 },
issn = { 0975-8887 },
pages = { 48-54 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume54/number3/8548-2108/ },
doi = { 10.5120/8548-2108 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T20:54:46.323686+05:30
%A Swati Jindal
%A Jigyasa Sharma
%T Review of Metamaterials in Microstrip Technology for Filter Applications
%J International Journal of Computer Applications
%@ 0975-8887
%V 54
%N 3
%P 48-54
%D 2012
%I Foundation of Computer Science (FCS), NY, USA
Abstract

In this work, a review has been presented on filter designs based on microstrip technology with the implementation of metamaterials. It briefly describes the properties of various types of resonators that behave as Left handed materials. Some of the implications of SRRs, CSRRs and other structures in filter design have also been discussed.

References
  1. V. G. Veselago, "The electrodynamics of substances with simultaneously negative values of ? and µ", Sov. Phys. Usp. Vol. 10, pp. 509-514 (1968).
  2. D. R. Smith, W. J. Padilla, D. C. Vier, S. C. Nemat-Nasser, and S. Schultz, "Composite medium with simultaneously negative permeability and permittivity", Phys. Rev. Lett. Vol. 84, 4184 (2000).
  3. Chang, K. Encyclopedia of RF and Microwave Engineering; John Wiley & Sons, Inc. : Hoboken, NJ, USA, 2005.
  4. M. Gil, J. Bonache, I. Gil, J. García-García, F. Martín, "Miniaturization of planar microwave circuits by using resonant-type left handed transmission lines",IET Microwave Antennas and Propagation 1 (2007) 73–79.
  5. J. B. Pendry, J. Holden, D. J. Robbins, W. J. Stewart, "Magnetism from conductors and enhanced nonlinear phenomena", IEEE Transactions on Microwave Theory and Techniques 47 (11) (1999) 2075–2084.
  6. F. Falcone, T. Lopetegi, J. D. Baena, R. Marqus, F. Martn, and M. Sorolla, "Effective negative stop-band microstrip lines based on complementary split ring resonators," IEEE Microwave and Wireless Component Letters, vol. 14, pp. 280{282, 2004}.
  7. F. Falcone, T. Lopetegi, M. A. G. Laso, J. D. Baena, J. Bonache, R. Marqués, F. Martín, M. Sorolla, Babinet principle applied to the design of metasurfaces and metamaterials, Physical Review Letters 93 (2004) 197401–197404.
  8. R. Marques, J. Baena, J. Martel, F. Medina, F. Falcone, M. Sorolla, and F. Martin, "Novel small resonant electromagnetic particles for metamaterial and filter design," in Proceedings of International Conference Electromagnetics in Advanced Applications (ICEAA), Torino, Italy, pp. 439{443, 2003}.
  9. M. Gil, J. Bonache, I. Gil, J. García-García, F. Martín, "On the transmission properties of left handed microstrip lines implemented by complementary split rings resonators" International Journal of Numerical Modeling: Electronic Networks, Devices and Fields 19 (2006) 87–103.
  10. M. Gil, I. Gil, J. Bonache, J. García-García, F. Martín, "Metamaterial transmission lines with extreme impedance values", Microwave and Optical Technology Letters 48 (2006) 2499–2505.
  11. G. Sisó, J. Bonache, M. Gil, J. García-García, F. Martín, Compact rat-race hybrid coupler implemented through artificial left handed and right handed lines, in: Proceedings of the IEEE MTT-S Int'l Microwave Symposium Digest, Honolulu, Hawaii, USA, June 2007, pp. 25–28.
  12. Shelby, RA; Smith, DR; Schultz, S; Smith D. R; Shultz S. , "Experimental Verification of a Negative Index of Refraction", Science 292 (5514)(2001) 77.
  13. R. Marques, F. Mesa, J. Martel, and F. Medina, "Comparative analysis of edge- and broadside-coupled split ring resonators for metamaterial design theory and experiments",IEEE Transactions on Antennas and Propagation, vol. 51, pp. 2572{2581,2003}.
  14. Movchan, A. B. ; and S. Guenneau, "Split-ring resonators and localized modes", Phys. Rev. B 70(12) (2004) 125116, Retrieved 2009-08-27.
  15. Katsarakis, N. ; T. Koschny, M. Kafesaki, E. N. Economou, C. M. Soukoulis , "Electric coupling to the magnetic resonance of split ring resonators", Appl. Phys. Lett. (Crete, Greece and Ames, Iowa, USA: American Institute of Physics) 84 (15) (2004) 2943–2945, Retrieved 2009-09-15.
  16. Moser, H. O. et al; Casse, B. D. F. ; Wilhelmi, O. ; Saw, B. T. , "Electromagnetic metamaterials over the whole THz range achievements and perspectives", ELECTROMAGNETIC MATERIALS Proceedings of the Symposium R, ICMAT 2005 (World Scientific Publishing Co. ) 18,Retrieved 2009-10-21.
  17. Wu, B. -I. ; W. Wang, J. Pacheco, X. Chen, T. Grczegorczyk and J. A. Kong , Gain", Progress in Electromagnetics Research 51(2005) 295–328, Retrieved 2009-09-23.
  18. J. Lezec, Henri; Jennifer A. Dionne, Harry A. Atwater, Frequencies", Science 316 (5823) (2007) 430, Retrieved 2009-10-06.
  19. Miguel Durán-Sindreu, Jordi Naqui, Ferran Paredes, Jordi Bonache and Ferran Martín, "Electrically Small Resonators for Planar Metamaterial, Microwave Circuit and Antenna Design: A Comparative Analysis" Appl. Sci. 2012, 2, 375-395; doi: 10. 3390/app2020375.
  20. J. Bonache, I. Gil, J. Garcia-Garcia, and F. Martin, "Novel microstrip band pass filters based on complementary split-ring resonators," IEEE Transactions on Microwave Theory and Techniques, vol. 54, pp. 265{271, 2006.
  21. J. Bonache, F. Marin, F. Falcone, J. Garcia, I. Gil, T. Lopetegi, M. A. G. Laso, R. Marques, F. Medina, and M. Sorolla, "Super compact split ring resonators CPW band pass filters", IEEE MTT-S Int Microwave symp Dig, Fort Worth, TX, June 2004.
  22. I. Gil, J. Bonache, J. Garcia-Garcia, F. Falcone, and F. Martin, "Metamaterials in microstrip technology for filter applications", AP-S Int Symp 1A (2005), 668–671.
  23. J. Garcia-Garcia, F. Martin, F. Falcone, J. Bonache, J. D. Baena, I. Gill, E. Amat, T. Lopetegi, M. A. G. Laso, J. A. M. Iturmendi, M. Sorolla, and R. Marques, "Microwave filters witch improved stop band based on sub-wavelength resonators", Microwave Opt Technology Lett 46 (2005), 283 - 286.
  24. I. Gil, J. Garcia-Garcia, J. Bonache, F. Martin, M. Sorolla, and R. Marques, "Varactor loaded split ring resonators for tunable notch filters at microwave frequencies",IEEE Electronic Letters, vol. 40, pp. 1347{1348, 2004.
  25. J. Garc?a-Garc?a, J. Bonache, F. Falcone, J. D. Baena, F. Marct?n, I. Gil, T. Lopetegi, M. A. G. Laso, A. Marcotegui, R. Marque's, and M. Sorolla, "Stepped-impedance low pass filter with spurious pass band suppression", Electron Lett 40 (2004).
  26. N. Engheta and R. W. Ziolkowski, Metamaterials: Physics and Engineering Explo-rations. Hoboken, NJ: John Wiley&Sons Inc. , 2006.
  27. M. Gil, J. Bonache, J. Garcia-Garcia, J. Martel, and F. Martin, "Composite right/left-handed metamaterial transmission lines based on complementary split-ring resonators and their applications to very wideband and compact filter design", IEEE Transactions on Microwave Theory and Techniques, vol. 55, pp. 1296{1304, 2007.
  28. I. Lin, M. DeVincentis, C. Caloz, and T. Itoh, "Arbitrary dual-band components using composite right/left-handed transmission lines", IEEE Transactions on Microwave Theory and Techniques, vol. 52, pp. 1142{1149, 2004.
  29. E. G. Cristal and S. Frankel, "Hairpin-line and hybrid hairpin line/ half-wave parallel-coupled-line filters," IEEE Trans. Microwave Theory Tech. , vol. MTT-20, Nov. 1972, pp. 719–728.
  30. S. Karimian and Z. Hu, "Miniaturised left-handed stepped impedance resonator for WLAN applications," 3rd IEEE International Symposium on Microwave, Antenna, Propagation (MAP) and EMC Technologies for Wireless Communications, 27- 29 October 2009, pp. 111–113.
  31. S. Karimian, Z. Hu, "Left-handed tri-section stepped impedance resonator," IEEE International Symposium on Radio-Frequency Integration Technology, 2009, pp. 311–314.
  32. Gil, I. , J. Bonache, J. Garcia-Garcia, F. Falcone, and F. Martin, "Metamaterials in microstrip technology for filter applications", 2005 IEEE Antennas and Propagation Society International Symposium, Vol. 1A, 668{671, 3{8 July, 2005.
  33. J. Bonache, I. Gil, J. García-García, and F. Martín, "Novel microstrip bandpass filters based on complementary split rings resonators", IEEE Trans. Microw. Theory Tech. , vol. 54, no. 1, pp. 265–271, Jan. 2006.
  34. Li Jiusheng and Du Tieying, "Application of metamaterial unit cell in bandpass filter", Microwave and Optical Technology Letters, Vol. 49, No. 9, 2007, pp. 2109 - 2111. doi: 10. 1002/mop. 22659.
  35. R. N. Baral and P. K. Singhal, "Miniaturized Microstrip Band pass Filter Using Coupled Metamaterial Resonators," International Journal Of Microwave and Optical Technology , Vol. 4, No. 2, 2009.
  36. S. Kahng and J. Ju, " Design of the UWB bandpass filter based on the 1 cell of microstrip CRLH-TL", Proc. International Conference on Microwave and Millimeter Wave Technology (IEEE-ICMMT 2008), Vol. 1, pp. 69-72, 2008
  37. M. Navarro-C´Ia, J. M. Carrasco, M. Beruete, And F. Falcone, "Ultra-Wideband Metamaterial Filter Based On Electroinductive-Wave Coupling Between Microstrips", Progress In Electromagnetics Research Letters, Vol. 12, Pp. 141–150, And 2009.
  38. F. Falcone, T. Lopetegi, J. D Baena, R. Marques, F. Martin and M. Sorolla," Effective Negative Stopband Microstrip Lines Based on Complementary Split Ring Resonators", IEEE Microwave And Wireless Components Letters, Vol. 14, No. 6, pp. 1522-1525, June 2004 . May 2006.
  39. Zachary M. Thomas, Tomasz M. Grzegorczyk, Bae-Ian Wu, and Jin Au Kong, "Enhanced Microstrip Stopband Filter Using A Metamaterial Substrate", Microwave and Optical Technology Letters, vol. 48,no. 8 pp. 141–150, 2009.
  40. Ali Abid and Hu Zhirun, "Sharp Cut-Off, Miniaturized Metamaterial Binomial Microstrip Low-Pass Filter",Microwave and Optical Technology Letters, Vol. 49, No. 10, Oct 2007, pp. 2406-2409, DOI: 10. 1002/mop. 22799.
  41. C. W. Tang and S. -C. Yang, "Employing Complementary Split-Ring Resonators for the Wide Stopband Microstrip Lowpass Filter Design", Microwave and Optical Technology Letters, Vol. 52, No. 11, 2010, pp. 2592-2594. doi:10. 1002/mop. 25541.
  42. Sudhakar Sahu, Rabindra Kishore Mishra, Dipak Ranjan Poddar, " Compact Metamaterial Microstrip Low-Pass Filter", Journal of Electromagnetic Analysis and Applications, 2011, 3, 399-405, doi:10. 4236/jemaa. 310063.
Index Terms

Computer Science
Information Sciences

Keywords

Metamaterials microstrip filter split ring resonator complementary split ring resonator