1. Lai, H. W., D. Xue, H. Wong, K. K. So, and X. Y. Zhang, "Broadband circularly polarized patch antenna arrays with multiple-layers structure," IEEE Antennas and Wireless Propagation Letters, Vol. 16, 525-528, 2016.
doi:10.1109/LAWP.2016.2587302 Google Scholar
2. Karlson, C., P. Cavero, T. Tekin, and D. Pouhe, "A new broadband antenna for satellite communications," Antennas & Propagation in Wireless Communications, 2014. Google Scholar
3. Tcheg, P. and D. Pouhe, "A design methodology for the implementation of planar spiral antennas with an integrated corporate feed," Progress In Electromagnetics Research C, Vol. 106, 239-253, 2020.
doi:10.2528/PIERC20071304 Google Scholar
4. Baghernia, E., M. M. Ali, and A. R. Sebak, "2 × 2 slot spiral cavity backed antenna array fed by printed gap waveguide," IEEE Access, Vol. 8, 170609-170617, 2020.
doi:10.1109/ACCESS.2020.3024564 Google Scholar
5. Duhamel, R. H. and J. P. Scherer, "Frequency independant antenna," Antenna Engineering Handbook, R. C. Johnson, McGraw-Hill, New York, 1993. Google Scholar
6. Zhou, H., A. Pal, A. Mehta, and H. Nakano, "6 × 6 array of four-arm spiral antennas for high-gain satellite receiver applications at low elevation," Proc. 2018 IEEE Int. Symp. on Antennas and Propagation & USNC/URSI National Radio Science Meeting, 469-470, Jul. 8–13, 2018. Google Scholar
7. Zhu, Q., K.-B. Ng, and C. H. Chan, "Printed circularly polarized spiral antenna array for millimeter-wave applications," IEEE Trans. Antennas and Propagation, Vol. 65, No. 2, 636-643, Feb. 2017.
doi:10.1109/TAP.2016.2640019 Google Scholar
8. Huang, J., W. Lin, F. Qiu, C. Jiang, D. Lei, and Y. J. Guo, "A low profile, ultra-lightweight, high efficient circularly-polarized antenna array for Ku band satellite applications," IEEE Access, Vol. 5, 18356-18365, 2017.
doi:10.1109/ACCESS.2017.2750318 Google Scholar
9. Wu, Q., J. Hirokawa, J. Yin, C. Yu, H. Wang, and W. Hong, "Millimeter-wave planar broadband circularly polarized antenna array using stacked curl elements," IEEE Trans. Antennas and Propagation, Vol. 65, No. 12, 7052-7062, Dec. 2017.
doi:10.1109/TAP.2017.2766456 Google Scholar
10. Baghernia, E., R. Movahedinia, and A. R. Sebak, "Broadband compact circularly polarized spiral antenna array fed by printed gap waveguide for millimeter-wave applications," IEEE Access, Vol. 9, 86-95, 2021.
doi:10.1109/ACCESS.2020.3046720 Google Scholar
11. Pozar, D. M., Microwave Engineering, 4th Ed., John Wiley & Sons, New York, 2012.
12. Henderson, A. and J. R. James, "Design of microstrip antenna feeds. Part 1: Estimation of radiation loss and design implications," IEE Proc. H — Microwaves, Optics and Antennas, Vol. 128, No. 1, Feb. 1981.
doi:10.1049/ip-h-1.1981.0004 Google Scholar
13. Hall, P. S. and J. R. James, "Design of microstrip antenna feeds. Part 2: Design and performance limitations of triplate corporate feeds," IEE Proc. H — Microwaves, Optics and Antennas, Vol. 128, No. 1, Feb. 1981.
doi:10.1049/ip-h-1.1981.0005 Google Scholar
14. Horng, T. S. and N. G. Alexopoulos, "Corporate feed design for microstrip arrays," IEEE Trans. Antennas and Propagation, Vol. 41, No. 12, 1615-1624, Dec. 1993.
doi:10.1109/8.273304 Google Scholar
15. Tcheg, P., K. D. Bello, and D. Pouhe, "A planar equiangular spiral antenna array for the V- /W-band," Proc. 11th European Conference on Antennas and Propagation (EUCAP), 1148-1152, Mar. 19–24, 2017. Google Scholar
16. Chen, T.-K., "Analysis and design of a multifunctional spiral antenna,", Dissertation, Texas A&M University, Aug. 2012. Google Scholar