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M. Singh et al.
References
1. J. Ma, R. Shrestha, J. Adelberg, C. Yeh, Z. Hossain, E. Knightly et al., Security and
eavesdropping in terahertz wireless links. Nature 563(7729), 89–93 (2018)
2. Home—5G Americas [Internet]. 5G Americas (2020), https://www.5gamericas.org/. Accessed
7 Aug 2020
3. FCC Opens Spectrum Horizons for New Services & Technologies [Internet]. Federal Communications Commission (2020), https://www.fcc.gov/document/fcc-opens-spectrum-horizonsnew-services-technologies. Accessed 7 Aug 2020
4. S. Koenig, D. Lopez-Diaz, J. Antes, F. Boes, R. Henneberger, A. Leuther et al., Wireless
sub-THz communication system with high data rate. Nat. Photonics 7(12), 977–981 (2013)
5. I. Akyildiz, J. Jornet, C. Han, Terahertz band: Next frontier for wireless communications. Phys.
Commun. 12, 16–32 (2014)
6. K. Jha, G. Singh, Terahertz planar antennas for future wireless communication: A technical
review. Infrared Phys. Technol. 60, 71–80 (2013)
7. M. Tamosiunaite, S. Tamosiunas, M. Zilinskas, G. Valusis, Atmospheric attenuation of the
terahertz wireless networks, in Broadband Communications Networks—Recent Advances and
Lessons from Practice, ed. by A. Haidine, A. Aqqal (IntechOpen, 2017)
8. H. Kim, W. Choe, J. Jeong, A Terahertz CMOS V-Shaped Patch Antenna with Defected Ground
Structure. Sensors 18(8), 2432 (2018)
9. K. Jha, G. Singh, Patch array antenna on EBG substrate, In Terahertz Planar Antennas for Next
Generation Communication, ed. by K. Jha, G. Singh. 1st ed. Switzerland: Springer international
publishing (2014), pp. 39–58.
10. K. Mak, K. So, H. Lai, K. Luk, A Magnetoelectric Dipole Leaky-Wave Antenna for MillimeterWave Application. IEEE Trans. Antennas Propag. 65(12), 6395–6402 (2017)
11. F. Formanek, M. Brun, T. Umetsu, S. Omori, A. Yasuda, Aspheric silicon lenses for terahertz
photoconductive antennas. Appl. Phys. Lett. 94(2), 021113 (2009)
12. L. Guo, F. Huang, X. Tang, A novel integrated MEMS helix antenna for terahertz applications.
Optik 125(1), 101–103 (2014)
13. K. Wu, Y.J. Cheng, T. Djerafi, W. Hong, Substrate-integrated millimeter-wave and terahertz
antenna technology. Proc. IEEE 100(7), 2219–2232 (2012)
14. Y. Sirmaci, C. Akin, C. Sabah, Fishnet based metamaterial loaded THz patch antenna. Opt.
Quant. Electron. 48(2) (2016)
15. K. Han, T. Nguyen, I. Park, H. Han, Terahertz Yagi-Uda antenna for high input resistance. J.
Infrared Millim. Terahertz Waves (2009)
16. A. Gonzalez, K. Kaneko, T. Kojima, S. I. Asayama, Y. Uzawa, Terahertz corrugated horns
(1.25–1.57 THz): design, gaussian modeling, and measurements. IEEE Trans. Terahertz Sci.
Technol. 7(1), 42–52 (2017)
17. H. Dabadifarahani, B. Ghalamkari, High efficiency miniaturized microstrip patch antenna for
wideband terahertz communications applications. Optik 194, 163118 (2019)
18. A. Singh, S. Singh, A trapezoidal microstrip patch antenna on photonic crystal substrate for
high speed THz applications. Photonics Nanostruct Fundam. Appl. 14, 52–62 (2015)
19. R. Kushwaha, P. Karuppanan, L. Malviya, Design and analysis of novel microstrip patch
antenna on photonic crystal in THz. Phys. B 545, 107–112 (2018)
20. A. Hocini, M. Temmar, D. Khedrouche, M. Zamani, Novel approach for the design and analysis of a terahertz microstrip patch antenna based on photonic crystals. Photonics Nanostruct
Fundam. Appl. 36, 100723 (2019)
21. L. C. Paul, M. Islam, Proposal of wide bandwidth and very miniaturized having dimension
of μm range slotted patch THz microstrip antenna using PBG substrate and DGS, in 20th
International Conference of Computer and Information Technology, ICCIT (2017), pp. 1–6
22. S. Azam, M. A. K. Khan, et al., Graphene based circular patch terahertz antenna using novel
substrate materials, in 2017 6th International Conference on Informatics, Electronics Vision,
2017 7th International Symposium in Computational Medical and Health Technolog ICIEVISCMHT (2018), pp. 1–6
M. Singh et al.
References
1. J. Ma, R. Shrestha, J. Adelberg, C. Yeh, Z. Hossain, E. Knightly et al., Security and
eavesdropping in terahertz wireless links. Nature 563(7729), 89–93 (2018)
2. Home—5G Americas [Internet]. 5G Americas (2020), https://www.5gamericas.org/. Accessed
7 Aug 2020
3. FCC Opens Spectrum Horizons for New Services & Technologies [Internet]. Federal Communications Commission (2020), https://www.fcc.gov/document/fcc-opens-spectrum-horizonsnew-services-technologies. Accessed 7 Aug 2020
4. S. Koenig, D. Lopez-Diaz, J. Antes, F. Boes, R. Henneberger, A. Leuther et al., Wireless
sub-THz communication system with high data rate. Nat. Photonics 7(12), 977–981 (2013)
5. I. Akyildiz, J. Jornet, C. Han, Terahertz band: Next frontier for wireless communications. Phys.
Commun. 12, 16–32 (2014)
6. K. Jha, G. Singh, Terahertz planar antennas for future wireless communication: A technical
review. Infrared Phys. Technol. 60, 71–80 (2013)
7. M. Tamosiunaite, S. Tamosiunas, M. Zilinskas, G. Valusis, Atmospheric attenuation of the
terahertz wireless networks, in Broadband Communications Networks—Recent Advances and
Lessons from Practice, ed. by A. Haidine, A. Aqqal (IntechOpen, 2017)
8. H. Kim, W. Choe, J. Jeong, A Terahertz CMOS V-Shaped Patch Antenna with Defected Ground
Structure. Sensors 18(8), 2432 (2018)
9. K. Jha, G. Singh, Patch array antenna on EBG substrate, In Terahertz Planar Antennas for Next
Generation Communication, ed. by K. Jha, G. Singh. 1st ed. Switzerland: Springer international
publishing (2014), pp. 39–58.
10. K. Mak, K. So, H. Lai, K. Luk, A Magnetoelectric Dipole Leaky-Wave Antenna for MillimeterWave Application. IEEE Trans. Antennas Propag. 65(12), 6395–6402 (2017)
11. F. Formanek, M. Brun, T. Umetsu, S. Omori, A. Yasuda, Aspheric silicon lenses for terahertz
photoconductive antennas. Appl. Phys. Lett. 94(2), 021113 (2009)
12. L. Guo, F. Huang, X. Tang, A novel integrated MEMS helix antenna for terahertz applications.
Optik 125(1), 101–103 (2014)
13. K. Wu, Y.J. Cheng, T. Djerafi, W. Hong, Substrate-integrated millimeter-wave and terahertz
antenna technology. Proc. IEEE 100(7), 2219–2232 (2012)
14. Y. Sirmaci, C. Akin, C. Sabah, Fishnet based metamaterial loaded THz patch antenna. Opt.
Quant. Electron. 48(2) (2016)
15. K. Han, T. Nguyen, I. Park, H. Han, Terahertz Yagi-Uda antenna for high input resistance. J.
Infrared Millim. Terahertz Waves (2009)
16. A. Gonzalez, K. Kaneko, T. Kojima, S. I. Asayama, Y. Uzawa, Terahertz corrugated horns
(1.25–1.57 THz): design, gaussian modeling, and measurements. IEEE Trans. Terahertz Sci.
Technol. 7(1), 42–52 (2017)
17. H. Dabadifarahani, B. Ghalamkari, High efficiency miniaturized microstrip patch antenna for
wideband terahertz communications applications. Optik 194, 163118 (2019)
18. A. Singh, S. Singh, A trapezoidal microstrip patch antenna on photonic crystal substrate for
high speed THz applications. Photonics Nanostruct Fundam. Appl. 14, 52–62 (2015)
19. R. Kushwaha, P. Karuppanan, L. Malviya, Design and analysis of novel microstrip patch
antenna on photonic crystal in THz. Phys. B 545, 107–112 (2018)
20. A. Hocini, M. Temmar, D. Khedrouche, M. Zamani, Novel approach for the design and analysis of a terahertz microstrip patch antenna based on photonic crystals. Photonics Nanostruct
Fundam. Appl. 36, 100723 (2019)
21. L. C. Paul, M. Islam, Proposal of wide bandwidth and very miniaturized having dimension
of μm range slotted patch THz microstrip antenna using PBG substrate and DGS, in 20th
International Conference of Computer and Information Technology, ICCIT (2017), pp. 1–6
22. S. Azam, M. A. K. Khan, et al., Graphene based circular patch terahertz antenna using novel
substrate materials, in 2017 6th International Conference on Informatics, Electronics Vision,
2017 7th International Symposium in Computational Medical and Health Technolog ICIEVISCMHT (2018), pp. 1–6
