References
- Ignacio Llatser, Christian Kremers, Albert Cabellos-Aparicio, Josep Miquel Jornet, Eduard Alarcón, Dmitry N. Chigrin, Graphene-based nano-patch antenna for terahertz radiation. Photonics and Nanostructures-Fundamentals and Applications (2012) 10: 353-358.
- Jemima Nissiyah George, M. Ganesh Madhan, Analysis of single band and dual band graphene based patch antenna for terahertz region, Physica E: Low-dimensional Systems and Nanostructures (2017) 94:126-131
- Khan, Md Abdul Kaium, Towqir Ahmed Shaem, and Mohammad Abdul Alim, Analysis of graphene based miniaturized terahertz patch antennas for single band and dual band operation, (2019) Optik. 194:163012
- Shalini, M., and M. Ganesh Madhan, Design and analysis of a dual-polarized graphene based microstrip patch antenna for terahertz applications, Optik (2019) 194: 163050
- Kazemi, F., Dual band compact fractal THz antenna based on CRLH-TL and graphene loads, Optik (2020) 206, 164369
- Bin Zhang, Josep Miquel Jornet, Ian F. Akyildiz Zhi Wu, Mutual Coupling Reduction for Ultra-Dense Multi-Band Plasmonic Nano-Antenna Arrays Using Graphene-Based Frequency Selective Surface IEEE Access (2019) 7: 33214-33225
- Bala, R., and Marwaha, A., Characterization of graphene for performance enhancement of patch antenna in THz region, Optik (2016) 127: 2089-2093
- Yanbin Luo, Qingsheng Zeng, Xin Yan, Yong Wu, Qichao Lu, Chaofan Zheng, Nan Hu, Wenqing Xie and Xia Zhang, Graphene-Based Multi-Beam Reconfigurable THz Antennas, IEEE Access (2019) 7: 30802-30808
- Tripathi, Subodh Kumar, Mukesh Kumar, and Ajay Kumar, Graphene based tunable and wideband terahertz antenna for wireless network communication, Wireless Networks (2019) 25: 4371-4381
- Mezache, Z., Analysis of multiband graphene-based terahertz square-ring fractal antenna, Ukrainian Journal of Physical Optics (2020) 21.2, 93-102
- Beck, F., Burch, M., Munz, T., Di Silvestro, L., & Weiskopf, D., Generalized Pythagoras trees: A fractal approach to hierarchy visualization, In International Joint Conference on Computer Vision, Imaging and Computer Graphics (pp. 115-135). (2014), Springer, Cham.
- Munz, T., Burch, M., van Benthem, T., Poels, Y., Beck, F., & Weiskopf, D., Overlap-free Drawing of Generalized Pythagoras Trees for Hierarchy Visualization, In 2019 IEEE Visualization Conference (VIS) (pp. 251-255) IEEE
- Aggarwal, A., & Kartikeyan, M. V., Pythagoras tree: A fractal patch antenna for multi-frequency and ultra-wide bandwidth operations, Progress In Electromagnetics Research (2010) 16, 25-35
- Kumar, D., Kumar, A., & Singh, A. K., Design analysis of Pythagoras tree shaped multiband fractal antenna, In 2014 International Conference on Computational Intelligence and Communication Networks (2014, November) (pp. 41-45) IEEE
- Mezache, Z., Zara, C., & Benabdelaziz, F., Design of a novel chiral fractal resonator, Serbian Journal of Electrical Engineering (2019) 16 (3) 377-385
- Mezache, Z., Mansoul, A., & Merabet, A. H., Accuracy and precision of sensing fructose concentration in water using new fractal antenna biosensor, Applied Physics A, (2023) 129(4), 267
