1. Bassari, S., C. H. Papas, and N. Engheta, "Electromagnetic wave propagation through a dielectric-chiral interface and through a chiral slab," J. Opt. Soc. Am. A., Vol. 5, No. 9, 1450-1459, 1988, Errata: Vol. 7, No. 11, 2154-2155, 1990.
doi:10.1364/JOSAA.5.001450 Google Scholar
2. Engheta, N. and P. Pelet, "Modes in chirowaveguides," Opt. Lett., Vol. 14, No. 11, 593-595, 1989.
doi:10.1364/OL.14.000593 Google Scholar
3. Pelet, P. and N. Engheta, "The theory of chirowaveguides," IEEE Trans. Antennas Prop., Vol. 38, No. 1, 90-98, 1990.
doi:10.1109/8.43593 Google Scholar
4. Engheta, N. and P. Pelet, "Surface waves in chiral layers," Opt. Lett., Vol. 16, No. 10, 723-725, 1991.
doi:10.1364/OL.16.000723 Google Scholar
5. Paiva, C. R. and A. M. Barbosa, "A method for the analysis of bi-isotropic planar waveguides: application to a grounded chiroslabguide," Electromagnetics, Vol. 11, 209-221, 1991.
doi:10.1080/02726349108908274 Google Scholar
6. Cory, H. and I. Rosenhouse, "Electromagnetic wave propagation along a chiral slab," IEE Proc. Pt. -H, Microwave, Antennas, Propagation, Vol. 138, No. 1, 51-54, 1991.
doi:10.1049/ip-h-2.1991.0009 Google Scholar
7. Mariotte, F., P. Pelet, and N. Engheta, "A review of recent study of guided waves in chiral media," Progress in Electromagnetics Research (PIER), Vol. 9, on Bianisotropic and Bi-isotropic Media and Applications, A. Priou (Ed.), Chapter 12, 311-350, EMW Publishing, Cambridge, Massachusetts, 1994. Google Scholar
8. Cory, H., "Chiral devices --- an overview of canonical problems," J. Electromagn. Waves Appl., Vol. 9, No. 5/6, 805-829, 1995.
doi:10.1163/156939395X00929 Google Scholar
9. Lacava, J. C. S. and F. Lumini, "An alternative formulation for guided electromagnetic fields in grounded chiral slab," Progress in Electromagnetics Research (PIER), Vol. 16, on Electromagnetic Waves, J. A. Kong (Ed.), Chapter 11, 285-304, EMW Publishing, Cambridge, Massachusetts, 1997. Google Scholar
10. Plaza, G., F. Mesa, and M. Horno, "Study of the dispersion characteristics of planar chiral lines," IEEE Trans. Microwave Theory Techn., Vol. 46, No. 8, 1150-1157, 1998.
doi:10.1109/22.704958 Google Scholar
11. Pelet, P. and N. Engheta, "Chirostrip antenna: line source problem," J. Electromagn. Waves Appl., Vol. 6, No. 5/6, 771-793, 1992.
doi:10.1163/156939392X01435 Google Scholar
12. Cheng, D. and L. Xue, "Dipole radiation in the presence of a grounded chiral slab," J. Electromagn. Waves Appl., Vol. 5, No. 2, 65-68, 1992. Google Scholar
13. Toscano, L. and L. Vegni, "Spectral dyadic Green’s function formulation for planar integrated structures with a grounded chiral slab," J. Electromagn. Waves Appl., Vol. 6, No. 5/6, 751-769, 1992.
doi:10.1163/156939392X01426 Google Scholar
14. Lumini, F. and J. C. S. Lacava, "Radiation properties of chirostrip antennas," Proceedings of the 1993 SBMO International Microwave Conference, Vol. 2, 587-592, Sao Paulo, Brazil, August 1993. Google Scholar
15. Pelet, P. and N. Engheta, "Theoretical study of radiation properties of a finite-length thin-wire chirostrip antenna using dyadic Green’s functions and method of moments," Progress in Electromagnetics Research (PIER), Vol. 9, on Bianisotropic and Biisotropic Media and Applications. A. Priou (Ed.), Chapter 14, 265-288, EMW Publishing, Cambridge, Massachusetts, 1994. Google Scholar
16. Lumini, F. and J. C. S. Lacava, "Electromagnetic fields in open chirostrip multilayered structures," Proceedings of the 1997 SBMO/IEEE MTT-S International Microwave and Optoelectronics Conference, Vol. 2, 649-654, Natal, Brazil, August 1997. Google Scholar
17. Pelet, P. and N. Engheta, "Novel rotational characteristics of radiation patterns of chirostrip dipole antennas," Microwave Opt. Technol. Lett., Vol. 5, No. 1, 31-34, 1992.
doi:10.1002/mop.4650050110 Google Scholar
18. Pelet, P. and N. Engheta, "Mutual coupling in finite-length thin wire chirostrip antennas," Microwave Opt. Technol. Lett., Vol. 6, No. 12, 671-675, 1993.
doi:10.1002/mop.4650061202 Google Scholar
19. Pozar, D. M., "Microstrip antennas and arrays on chiral substrates," IEEE Trans. Antennas Prop., Vol. 40, No. 10, 1260-1263, 1992.
doi:10.1109/8.182462 Google Scholar
20. Toscano, A. and L. Vegni, "A new efficient moment method formulation for the design of microstrip antennas over a chiral grounded slab," J. Electromagn. Waves Appl., Vol. 11, No. 5, 567-592, 1997.
doi:10.1163/156939397X00846 Google Scholar
21. Unrau, U. B., "A bibliography on research in the field of bianisotropic, bi-isotropic and chiral media and their microwave applications," Proceedings of CHIRAL’94: 3rd International Workshop on Chiral, Bi-isotropic and Bi-anisotropic Media, A1-A48, Perigueux, France, 1994. The bibliography is also available in electronic form from the Listserv group CHIRAL-L. Google Scholar
22. Lumini, F. and J. C. S. Lacava, "Numerical calculation of electromagnetic fields in multilayered chirostrip antennas," Proceedings of the 11th Conference on the Computation of Electromagnetic Fields, Vol. 2, 675-676, Rio de Janeiro, Brazil, November 1997. Google Scholar
23. Lumini, F. and J. C. S. Lacava, "On the behavior of electromagnetic fields on the interfaces of chirostrip dipole antennas," Microwave Opt. Technol. Lett., Vol. 19, No. 5, 338-342, 1998.
doi:10.1002/(SICI)1098-2760(19981205)19:5<338::AID-MOP8>3.0.CO;2-F Google Scholar
24. Scott, C., The Spectral Domain Method in Electromagnetics, Artech House, Norwood, 1989.
25. Sihvola, A. H. and I. V. Lindell, "Bi-isotropic constitutive relations," Microwave Opt. Technol. Lett., Vol. 4, No. 8, 295-297, July 1991.
doi:10.1002/mop.4650040805 Google Scholar
26. McLachlan, N. W., Bessel Functions for Engineers, Oxford University Press, 1941.
27. Mosig, J. R. and F. Gardiol, "Analytical and numerical techniques for the analysis of microstrip antennas," Ann. Telecommun., Vol. 40, No. 7-8, 411-437, 1985. Google Scholar
28. Ougier, S., I. Chenerie, and S. Bolioli, "Measurement method for chiral media," Proceedings of the 22nd European Microwave Conference, Vol. 1, 682-687, Espoo, Finland, August 1992. Google Scholar