Vol. 5
Latest Volume
All Volumes
PIERB 109 [2024] PIERB 108 [2024] PIERB 107 [2024] PIERB 106 [2024] PIERB 105 [2024] PIERB 104 [2024] PIERB 103 [2023] PIERB 102 [2023] PIERB 101 [2023] PIERB 100 [2023] PIERB 99 [2023] PIERB 98 [2023] PIERB 97 [2022] PIERB 96 [2022] PIERB 95 [2022] PIERB 94 [2021] PIERB 93 [2021] PIERB 92 [2021] PIERB 91 [2021] PIERB 90 [2021] PIERB 89 [2020] PIERB 88 [2020] PIERB 87 [2020] PIERB 86 [2020] PIERB 85 [2019] PIERB 84 [2019] PIERB 83 [2019] PIERB 82 [2018] PIERB 81 [2018] PIERB 80 [2018] PIERB 79 [2017] PIERB 78 [2017] PIERB 77 [2017] PIERB 76 [2017] PIERB 75 [2017] PIERB 74 [2017] PIERB 73 [2017] PIERB 72 [2017] PIERB 71 [2016] PIERB 70 [2016] PIERB 69 [2016] PIERB 68 [2016] PIERB 67 [2016] PIERB 66 [2016] PIERB 65 [2016] PIERB 64 [2015] PIERB 63 [2015] PIERB 62 [2015] PIERB 61 [2014] PIERB 60 [2014] PIERB 59 [2014] PIERB 58 [2014] PIERB 57 [2014] PIERB 56 [2013] PIERB 55 [2013] PIERB 54 [2013] PIERB 53 [2013] PIERB 52 [2013] PIERB 51 [2013] PIERB 50 [2013] PIERB 49 [2013] PIERB 48 [2013] PIERB 47 [2013] PIERB 46 [2013] PIERB 45 [2012] PIERB 44 [2012] PIERB 43 [2012] PIERB 42 [2012] PIERB 41 [2012] PIERB 40 [2012] PIERB 39 [2012] PIERB 38 [2012] PIERB 37 [2012] PIERB 36 [2012] PIERB 35 [2011] PIERB 34 [2011] PIERB 33 [2011] PIERB 32 [2011] PIERB 31 [2011] PIERB 30 [2011] PIERB 29 [2011] PIERB 28 [2011] PIERB 27 [2011] PIERB 26 [2010] PIERB 25 [2010] PIERB 24 [2010] PIERB 23 [2010] PIERB 22 [2010] PIERB 21 [2010] PIERB 20 [2010] PIERB 19 [2010] PIERB 18 [2009] PIERB 17 [2009] PIERB 16 [2009] PIERB 15 [2009] PIERB 14 [2009] PIERB 13 [2009] PIERB 12 [2009] PIERB 11 [2009] PIERB 10 [2008] PIERB 9 [2008] PIERB 8 [2008] PIERB 7 [2008] PIERB 6 [2008] PIERB 5 [2008] PIERB 4 [2008] PIERB 3 [2008] PIERB 2 [2008] PIERB 1 [2008]
2008-03-18
Diffraction of EM Plane Wave by a Slit in an Impedance Plane Using Maliuzhinets Function
By
Progress In Electromagnetics Research B, Vol. 5, 265-273, 2008
Abstract
Diffraction of an electromagnetic plane wave from a slit in an impedance plane has been presented. The method is based on Maliuzhinets technique for impedance surfaces. Comparison of the field patterns with different values of the face impedance are also presented.
Citation
Muhammad Naveed, Qaisar Naqvi, and Kohei Hongo, "Diffraction of EM Plane Wave by a Slit in an Impedance Plane Using Maliuzhinets Function," Progress In Electromagnetics Research B, Vol. 5, 265-273, 2008.
doi:10.2528/PIERB08021402
References

1. Elsherbeni, A. Z. and M. Hamid, "Diffraction by a wide double wedge," IEEE Transactions on Antennas and Propagation, Vol. 32, No. 11, November 1984.
doi:10.1109/TAP.1984.1143231

2. Ghazi, G. and M. Shahabadi, "Modal analysis of extraordinary transmission through an array of subwavelength slits," Progress In Electromagnetics Research, Vol. 79, 59-74, 2008.
doi:10.2528/PIER07092402

3. Zahedi, M. M. and M. S. Abrishamian, "Scattering from semi-elliptic channel loaded with impedance elliptical cylinder," Progress In Electromagnetics Research, Vol. 79, 47-58, 2008.
doi:10.2528/PIER07091803

4. Imran, A., Q. A. Naqvi, and K. Hongo, "Diffraction of electromagnetic plane wave by an impedance strip," Progress In Electromagnetics Research, Vol. 75, 303-318, 2007.
doi:10.2528/PIER07053104

5. Hongo, K. and Q. A. Naqvi, "Diffraction of electromagnetic wave by disk and circular hole in a perfectly conducting plane," Progress In Electromagnetics Research, Vol. 68, 113-150, 2007.
doi:10.2528/PIER06073102

6. Imran, A., Q. A. Naqvi, and K. Hongo, "Diffraction of plane wave by two parallel slits in an infinitely long impedance plane using the method of Kobayashi potential," Progress In Electromagnetics Research, Vol. 63, 107-123, 2006.
doi:10.2528/PIER06042601

7. Hussain, W., "Asymptotic analysis of a line source diffraction by a perfectly conducting half-plane in a bi-isotropic medium," Progress In Electromagnetics Research, Vol. 58, 271-283, 2006.
doi:10.2528/PIER05091204

8. Ciarkowski, A., "Electromagetic pulse diffraction by a moving half-plane," Progress In Electromagnetics Research, Vol. 64, 53-67, 2006.
doi:10.2528/PIER06052403

9. Cinar, G. and A. Bykaksoy, "A hybrid method for the solution of plane wave diffraction by an impedance loaded parallel plate waveguide," Progress In Electromagnetics Research, Vol. 60, 293-310, 2006.

10. Senior, T. A. and E. Topsakal, "Diffraction by an anisotropic impedance half place-revised solution," Progress In Electromagnetics Research, Vol. 53, 1-19, 2005.
doi:10.2528/PIER04061702

11. Naveed, M., Q. A. Naqvi, and K. Hongo, "Scattering of electromagnetic plane wave by a perfectly conducting slit and a PEMC parallel cylinder," Progress In Electromagnetics Research M, Vol. 1, 45-58, 2008.

12. Li, X.-F., Y.-J. Xie, and R. Yang, "High-frequency method analysis on scattering from homogenous dielectric objects with electrically large size in half space," Progress In Electromagnetics Research B, Vol. 1, 177-188, 2008.
doi:10.2528/PIERB07103001

13. Liang, C.-H., Z. Liu, and H. Di, "Study on the blockage of electromagnetic rays analytically," Progress In Electromagnetics Research B, Vol. 1, 253-268, 2008.
doi:10.2528/PIERB07102902

14. Maliuzhinets, G. D., "Excitation, reflection and emission of surface waves from a wedge with given face impedances," Journal of Mathematical Physics, 752-755, 1958.

15. Osipov, A. V., "A simple approximation of the Maliuzhinets function for describing wedge diffraction," IEEE Transactions on Antennas and Propagation, Vol. 53, No. 8, August 2005.
doi:10.1109/TAP.2005.851795

16. Hongo, K. and E. Nakajima, "Polynomial approximation of Maliuzhinets function," IEEE Transactions on Antennas and Propagation, Vol. 34, No. 7, July 1986.
doi:10.1109/TAP.1986.1143921

17. Hongo, K. and H. Kobayashi, "Evaluation of the surface field scattered by an impedance polygonal cylinder," Electromagnetics, Vol. 21, 319-339, 2001.