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153 | Badr, Murdas & Aldhahab
[41] E. Karooby and N. Granpayeh, “Potential applications accessibility in dna origami nanoantenna plasmonic
of nanoshell bow-tie antennas for biological imaging hotspots,” Adv Mater Interfaces, vol. 9, no. 24,
and hyperthermia therapy,” Optical Engineering, vol. 58, p. 2200255, 2022.
no. 6, p. 65102, 2019.
[52] A. Sangwan and J. M. Jornet, “Joint communication
[42] B. Schuler, L. Ku¨hner, M. Hentschel, H. Giessen, and and bio-sensing with plasmonic nano-systems to pre-
C. Tar´in, “Adaptive method for quantitative estimation of vent the spread of infectious diseases in the internet of
glucose and fructose concentrations in aqueous solutions nano-bio things,” IEEE Journal on Selected Areas in
based on infrared nanoantenna optics,” Sensors, vol. 19, Communications, vol. 40, no. 11, p. 3271–3284, 2022.
no. 14, p. 3053, 2019.
[53] A. M. Ghanim, A. E. Alsayed, A. Yahia, and M. A.
[43] R. H. Mahdi and H. A. Jawad, “Thermal response of Swillam, “Dielectric nanoantennas–enhanced localized
skin diseased tissue treated by plasmonic nanoantenna,” surface plasmon resonance for sensing applications,” in
International Journal of Electrical and Computer Engi- 2022 Photonics North (PN), IEEE, p. 1, 2022.
neering, vol. 10, no. 3, p. 2969, 2020.
[54] S. F. M. Bouchra and Z. K. Djalal, “Design of optical
[44] R. A. M. Lameirinhas, J. P. N. Torres, and A. Baptista, gold printed antenna in terahertz band for on body wban
“A sensor based on nanoantennas,” Applied Sciences, applications,” Microwave Review, vol. 28, no. 1, 2022.
vol. 10, no. 19, p. 6837, 2020.
[55] G. Brunetti, N. Sasanelli, M. N. Armenise, and
[45] M. Kumar, S. Goel, A. Rajawat, and S. H. Gupta, “De- C. Ciminelli, “Nanoscale optical trapping by means of
sign of optical antenna operating at terahertz frequency dielectric bowtie,” in Photonics, MDPI, p. 425, 2022.
for in-vivo cancer detection,” Optik (Stuttg), vol. 216,
p. 164910, 2020. [56] J. Xie, Z. Ren, J. Wei, W. Liu, J. Zhou, and C. Lee, “Zero-
bias long-wave infrared nanoantenna-mediated graphene
[46] M. J. Rabienejhad, A. Mazaheri, and M. Davoudi- photodetector for polarimetric and spectroscopic sens-
Darareh, “Design and optimization of nano-antenna for ing,” Adv Opt Mater, p. 2202867, 2023.
thermal ablation of liver cancer cells,” Chinese Physics
B, vol. 30, no. 4, p. 048401, 2021. [57] J. Sendra, F. Haake, M. Calvo, H. Galinski, and R. Spole-
nak, “Scanning reflectance anisotropy microscopy for
[47] A. Sangwan and J. M. Jornet, “Joint nanoscale communi- multi-material strain mapping,” arXiv preprint arXiv
cation and sensing enabled by plasmonic nano-antennas,” 2302, p. 04095, 2023.
in Proceedings of the Eight Annual ACM International
Conference on Nanoscale Computing and Communica- [58] A. J. et al., “Wireless electrical-molecular quantum sig-
tion, p. 1–6, 2021. nalling for cancer cell induced death,” bioRxiv, p. 2023,
2023.
[48] Q. Z. et al, “Dynamic real-time imaging of living cell
traction force by piezo-phototronic light nano-antenna [59] R. H. Mahdi and H. A. Jawad, “Plasmonic optical
array,” Sci Adv, vol. 7, no. 22, p. eabe7738, 2021. nano-antenna for biomedical applications,” in Plasmonic
Nanostructures-Basic Concepts, Optimization and Ap-
[49] C. Hou, K. Wang, W. Zhang, S. Wang, and L. Dong, plications, IntechOpen, 2023.
“Plasmonic nano-antennas enhanced near-infrared non-
invasive glucose detection,” in 2022 IEEE Interna- [60] B. Moulfi, S. Ferouani, and D. Ziani-Kerarti, “Nanorect-
tional Conference on Manipulation, Manufacturing and angular printed gold antenna for on-human body wire-
Measurement on the Nanoscale (3M-NANO), IEEE, less body network applications,” Telecommunications
p. 482–486, 2022. and Radio Engineering, vol. 82, no. 1, 2023.
[50] M. D. GEYI?KOG? LU, K. O. . Hilal, B. C¸ AVUS¸ OG? LU,
M. ERTUGRUL, and K. ABBASI?AN, “Designing
graphene-based antenna for terahertz wave ablation
(twa) system,” Erzincan University Journal of Science
and Technology, vol. 15, no. 2, p. 507–514.
[51] C. Close, K. Trofymchuk, L. Grabenhorst, B. Lalkens,
V. Glembockyte, and P. Tinnefeld, “Maximizing the