Stop-Band Filter using A New Metamaterial Complementary Split Triangle Resonators (CSTRs)

Authors

  • M. A. Abaga Abessolo Information and Telecommunication Systems Laboratory (LaSIT) Faculty of Sciences, Abdelmalek Essaadi University, Tetuan, Morocco
  • Y. Diallo Information and Telecommunication Systems Laboratory (LaSIT) Faculty of Sciences, Abdelmalek Essaadi University, Tetuan, Morocco
  • A. Jaoujal Information and Telecommunication Systems Laboratory (LaSIT) Faculty of Sciences, Abdelmalek Essaadi University, Tetuan, Morocco
  • A. El Moussaoui Information and Telecommunication Systems Laboratory (LaSIT) Faculty of Sciences, Abdelmalek Essaadi University, Tetuan, Morocco
  • N. Aknin Information and Telecommunication Systems Laboratory (LaSIT) Faculty of Sciences, Abdelmalek Essaadi University, Tetuan, Morocco

Keywords:

Metamaterial, split triangle resonators, stop-band filter

Abstract

In this paper, a compact stop-band microstrip filter based on a new complementary split triangle resonator (CSTRs) is presented. We first describe the structure of the resonator and present its characteristics, which are essentially a simultaneous negative-? and negative-?. Then, we apply the complementary of this structure on a microstrip device. The result gives stop-band filter with high rejection band around the resonance frequency of the CSTRs (3.2GHz). The substrate used is the FR4.

Downloads

Download data is not yet available.

References

J. B. Pendry, A. J. Holden, D. J. Robbins, and W. J. Stewart, “Magnetism from conductors and enhanced nonlinear phenomena,” IEEE Trans. on Microwave Theory and Techniques, vol. 47, no. 11, Nov. 1999.

C. R. Simovski and S. L. He, “Frequency range and explicit expressions for negative permittivity and permeability for an isotropic medium formed by a lattice of perfectly conducting omega particles,” Phys. Lett., vol. A, no. 311, pp. 254, 2003.

L. Ran, J. Huangfu, H. Chen, Y. Li, X. Zhang, K. Chen, and J. A. Kong, “Microwave solid-state lefthanded material with a broad bandwidth and an ultralow loss,” Phys. Rev., vol. B, no. 70, 2004.

M. A. Abessolo, A. El Moussaoui, and N. Aknin, “Dual-band monopole antenna with omega particles for wireless applications,” Progress In Electromagnetics Research Letters, vol. 24, pp. 27-34, 2011.

H. Chen, L. Ran, J. Huangfu, X. Zhang, and K. Chen, “Left-handed materials composed of only S-shaped resonators,” Phys. Rev., E, vol. 70, 2004.

C. Sabah, “Tunable metamaterial design composed of triangular split ring resonator and wire strip for S and C microwaves bands,” Progress In Electromagnetics Research B, vol. 22, pp. 341-357, 2010.

H. G. Booker, “Slot aerials and their relation to complementary wire aerials (Babinet’s principle),” J. Inst. Elect. Eng., pt. III-A, vol. 93, no. 4, pp. 620-626, May 1946.

G. A. Deschamps, “Impedance properties of complementary multi-terminal planar structures,” IRE Trans. Antennas Propagat., vol. 7, pp. 371- 378 Dec. 1959.

A. Alù, F. Bilotti, N. Engheta, and L. Vegni, “Sub-wavelength, compact, resonant patch antennas loaded with metamaterials,” IEEE Trans. Antennas Propagat., vol. 55, no. 1, pp. 13-25, 2007.

F. Falcone, T. Lopetegi, J. D. Baena, R. Marqués, F. Martín, and M. Sorolla, “Effective negative-ε stopband microstrip lines based on complementary split ring resonators,” IEEE Microwave and Wireless Compoments Lett., vol. 14, no. 6, June 2004.

B. D. Braaten, R. P. Scheeler, M. Reich, R. M. Nelson, C. Bauer-Reich, J. Glower, and G. J. Owen, “Compact metamaterial-based UHF RFID antennas: deformed omega and split-ring resonator structures,” Appl. Comp. Electro. Society (ACES) Journal, vol. 25, no. 6, pp. 530-542, June 2010.

Z. Duan and S. Qu, Y. Hou, “Electrically small antenna inspired by spired split ring resonator,” Progress In Electromagnetics Research Letters, vol. 7, pp. 47-57, 2009.

M. A. Abessolo, N. Aknin, and A. El Moussaoui, “A new left-handed metamaterial structure based on split-triangle resonators (STRs),” Appl. Comp. Electro. Society (ACES) Journal, vol. 26, no. 11, Nov. 2011.

D. R. Smith, D. C. Vier, Th. Koschny, and C. M. Soukoulis, “Electromagnetic parameter retrieval from inhomogeneous metamaterials,” Foundation for Research and Technology Hellas (FORTH), 71110 Heraklion, Crete, Greece, March 2005.

D. R. Smith, S. Schultz, P. Markoš, and C. M. Soukoulis, “Determination of effective permittivity and permeability of metamaterials from reflection and transmission coefficient,” Phys. Rev. vol. B 65, 195104, 2002.

Q. -L. Zhang, W. -Y. Yin, S. He, and L. -S. Wu, “Evanescent-mode substrate integrated waveguide (SIW) filters implemented with complementary split ring resonators,” Progress In Electromagnetics Research, vol. 111, pp. 419-432, 2011.

X. -C. Zhang, Z. -Y. Yu, and J. Xu, “Novel bandpass substrate integrated waveguide (SIW) filter based on complementary split ring resonators (CSRRs),” Progress In Electromagnetics Research, vol. 72, pp. 39-46, 2007.

X. Hu, Q. Zhang, and S. He, “Compact dual-band rejection filter based on complementary meander line split ring resonator,” Progress In Electromagnetics Research Letters, vol. 8, pp. 181-190, 2009.

M. Keshvari and M. Tayarani, “A novel miniaturized bandpass filter based on complementary split ring resonators (CSRRs) and open-loop resonators,” Progress In Electromagnetics Research Letters, vol. 23, pp. 165-172, 2011.

Downloads

Published

2021-10-06

How to Cite

[1]
M. A. A. . Abessolo, Y. . Diallo, A. . Jaoujal, A. E. . Moussaoui, and N. . Aknin, “Stop-Band Filter using A New Metamaterial Complementary Split Triangle Resonators (CSTRs)”, ACES Journal, vol. 28, no. 04, pp. 353–358, Oct. 2021.

Issue

Section

Articles