1. Born, M. and E. Wolf, Principles of Optics, Pergamon, 1969.
2. Mittra, R. and S. W. Lee, Analytical Techniques in the Theory of Guided Waves, Macmillan, 1971.
3. Kim, J. H. and H. J. Eom, "Radiation from multiple annular slots on a circular cavity," Journal of Electromagnetic Waves and Applications, Vol. 21, No. 1, 47-56, 2007.
doi:10.1163/156939307779391713 Google Scholar
4. Al-Zoulbi, A. S., A. A. Kishk, and A. W. Glisson, "Analysis and design of a rectangular dielectric resonator antenna FED by dielectric image line through narrow slots," Progress In Electromagnetic Research, Vol. 77, 379-390, 2007.
doi:10.2528/PIER07082504 Google Scholar
5. Zhao, X. W., X. J. Dang, Y. Zhang, and C. H. Liang, "MLFMA analysis of waveguide arrays with narrow-wall slots," Journal of Electromagnetic Waves and Applications, Vol. 21, No. 8, 1063-1078, 2007. Google Scholar
6. Das, S., A. Chakrabarty, and A. Chakraborty, "Characteristics of an offset longitudinal/transverse slot coupled crossed waveguide junction using multiple cavity modeling technique considering the TE00 mode at the slot aperture," Progress In Electromagnetic Research, Vol. 67, 297-316, 2007.
doi:10.2528/PIER06092701 Google Scholar
7. Kukharchik, P. D., V. M. Serdyuk, and J. A. Titovitsky, "Diffraction of hybrid modes in a cylindrical cavity resonator by a transverse circular slot with a plane anisotropic dielectric layer," Progress In Electromagnetic Research B, Vol. 3, 73-94, 2008.
doi:10.2528/PIERB07112502 Google Scholar
8. Weinstein, L. A., The Theory of Diffraction and the Factorization Method, Golem, 1969.
9. Jones, D. S., Acoustic and Electromagnetic Waves, Clarendon Press, 1989.
10. Kashyap, S. C. and M. A. Hamid, "Diffraction characteristics of a slit in a thick conducting screen," IEEE Trans. Antennas and Propag., Vol. 19, No. 4, 499-507, 1971.
doi:10.1109/TAP.1971.1139961 Google Scholar
11. Litvinenko, L. N., S. L. Prosvirnin, and V. P. Shestopalov, "Diffraction of a plane H-polarized electromagnetic wave by a slot in a conducting screen of finite thickness," Radiotechn. & Electron., Vol. 22, No. 3, 474-484, 1977 (in Russian). Google Scholar
12. Nesterenko, M. V., V. A. Katrich, and Yu. M. Penkin, "Analytical methods in theory of slot-hole coupling of electrodynamics volumes," Progress In Electromagnetic Research, Vol. 70, 79-174, 2007.
doi:10.2528/PIER06121203 Google Scholar
13. Zhao, X. W., X. J. Dang, Y. Zhang, and C. H. Liang, "MLFMA analysis of waveguide arrays with narrow-wall slots," Journal of Electromagnetic Waves and Applications, Vol. 21, No. 8, 1063-1078, 2007. Google Scholar
14. Veliev, E. I., M. V. Ivakhnychenko, and T. M. Ahmedov, "Fractional boundary conditions in plane wave diffraction on a strip," Progress In Electromagnetic Research, Vol. 79, 443-462, 2008.
doi:10.2528/PIER07102406 Google Scholar
15. McLachlan, N. W., Theory and Application of Mathieu Functions, Clarendon, 1947.
16. Serdyuk, V. M., "Diffraction of a plane electromagnetic wave by a slot in a conducting screen of arbitrary thickness," Technical Physics, Vol. 50, No. 8, 1076-1083, 2005.
doi:10.1134/1.2014542 Google Scholar
17. Tikhonov, A. N. and V. Ya. Arsenin, Solutions of Ill-Posed Problems, Weston, 1977.
18. Serdyuk, V. M., "Diffraction of a plane electromagnetic wave by a slot in a conducting screen with a transverse dielectric layer," Technical Physics, Vol. 51, No. 6, 777-785, 2006.
doi:10.1134/S1063784206060144 Google Scholar
19. Stratton, J. A., Electromagnetic Theory, McGraw-Hill, 1941.
20. Kantorovich, L. V. and V. I. Krylov, Approximate Methods of Higher Analysis, Wiley, 1964.
21. Faddeev, D. K. and V. N. Faddeeva, Computational Methods of Linear Algebra, Dover, 1959.
22. Watson, W. A., T. Philipson, and P. Oates, Numerical Analysis — The Mathematics of Computing, Vol. 1, Arnold, 1970.