[1] S. Aksoy and O.A. Tretyakov. Evolution equations for analytical study of digital signals
in waveguides. Journal of Electromagnetic Waves and Applications, 17, 2003.
[2] V.V. Borisov. Transient Electromagnetic Waves. Leningrad University Press, Leningrad,
1987.
[3] E. Eroglu. Dalga Kılavuzları Boyunca Geçiçi Sinyallerin Transferi (Transferring of Transient
Signals Along Waveguides). PhD thesis, Gebze Institute of Technology, 2011.
[4] E. Eroglu, S. Aksoy, and O.A. Tretyakov. Surplus of Energy for Time-domain Waveguide
Modes. Energy Education Science and Technology Part A: Energy Science and Research,
29(1):495–506, 2012.
[5] G.J. Gabriel. Theory of Electromagnetic Transmission Structures Part I: Relativistic Foundation
and Network Formalism. Proceedings of the IEEE, 68(3):354–366, 1980.
[6] W. Miller Jr. Symmetry and Separation of Variables. Addison-Wesley Publication Co.,
Boston, 1977.
[7] G. Kristensson. Transient Electromagnetic Wave Propagation in Waveguides. Journal of
Electromagnetic Waves and Applications, 9(5/6):645–671, 1995.
[8] U.S. Sener and E. Sener. Review of Time DomainWaveguideModes in Perspective of Evolutionary
Approach to Electromagnetics (EAE). Balkan Journal of Mathematics, 1(1):61–
71, 2013.
[9] A.B. Shvartsburg. Single-cycle Waveforms and Non-periodic Waves in Dispersive Media
(exactly solvable models). Physics-Uspekhi (Advances in Physical Sciences), 41(1):77–94,
1998.
REFERENCES 366
[10] A. Slivinski and E. Heyman. Time-domain Near-field Analysis of Short-pulse Antennas.
Part I: Spherical wave (multipole) expansion. IEEE Transactions on Antennas and Propagation,
47(2):271–279, 1999.
[11] A. Taflove and S. Hagness. Computational electrodynamics: the finite-difference timedomain
method. Artech House, Boston, 2005.
[12] O.A. Tretyakov. Evolutionary Waveguide Equations. Soviet Journal of Communications
Technology and Electronics, 35, 1990.
[13] O.A. Tretyakov. Essentials of Nonstationary and Nonlinear Electromagnetic Field Theory.
Science House Co. Ltd, Tokyo, 1993.
[14] O.A. Tretyakov. Evolutionary Equations for the Theory of Waveguides. IEEE Antennas
and Propagation Society, AP-S International Symposium (Digest), 3, 1994.
[15] O.A. Tretyakov and O. Akgün. Derivation of Klein-Gordon Equation fromMaxwell’s Equations
and Study of Relativistic Time-domain Waveguide Modes. PIER, 105, 2010.
[16] G. Wen. A Time-domain Theory of Waveguides. PIER, 59:267–297, 2006
Thank you for copying data from http://www.arastirmax.com