Efficient ADE-TLM Scheme for Modeling Drude Based Graphene in Terahertz Spectrum

被引:0
作者
Moumou M. [1 ]
El Adraoui S. [1 ]
Mounirh K. [1 ]
Kanjaa M. [1 ]
Khalladi M. [1 ]
机构
[1] EMG Group, LaSIT Laboratory, Abdelmalek Essaadi University, Tetouan
来源
Progress in Electromagnetics Research Letters | 2023年 / 112卷
关键词
Compilation and indexing terms; Copyright 2025 Elsevier Inc;
D O I
10.2528/PIERL23060904
中图分类号
学科分类号
摘要
In this work, a novel time domain Transmission Line Matrix (TLM) algorithm with Symmetrical Condensed Node (SCN) is developed to model electromagnetic (EM) wave propagation through a single graphene layer in Terahertz (THz) spectrum. The intraband conductivity of graphene (assumed to follow the Drude model) is implemented in TLM method by using the Auxiliary Differential Equation (ADE) of conduction current density. The validity and stability of the obtained results demonstrate the effectiveness and precision of this new modeling technique named ADE-(SCN)TLM, and prove that this method is a powerful tool that can be used to model and simulate complex devices based on graphene sheet for terahertz applications (e.g., Electronics, optoelectronic, etc.). © 2023, Electromagnetics Academy. All rights reserved.
引用
收藏
页码:119 / 126
页数:7
相关论文
共 27 条
  • [1] Mbayachi V. B., Ndayiragije E., Sammani T., Taj S., Mbuta E. R., Graphene synthesis, characterization and its applications: A review, Results in Chemistry, 3, (2021)
  • [2] Yang G., Li L., Lee W. B., Ng M. C., Structure of graphene and its disorders: A review, Science and Technology of Advanced Materials, 19, 1, pp. 613-648, (2018)
  • [3] Kumar V., Linear and nonlinear optical properties of graphene: A review, Journal of Electronic Materials, 50, 7, pp. 3773-3799, (2021)
  • [4] Ramadan O., Improved direct integration auxiliary differential equation FDTD scheme for modeling graphene drude dispersion, Optik, 219, (2020)
  • [5] Wang D. W., Zhao W. S., Gu X. Q., Chen W., Yin W. Y., Wideband modeling of graphene-based structures at different temperatures using hybrid FDTD method, IEEE Transactions on Nanotechnology, 14, 2, pp. 250-258, (2015)
  • [6] Moharrami F., Atlasbaf Z., Simulation of multilayer graphene-dielectric metamaterial by implementing SBC model of graphene in the HIE-FDTD method, IEEE Transactions on Antennas and Propagation, 68, 3, pp. 2238-2245, (2019)
  • [7] Chen W.-J., Liang Q.-W., Long S.-Y., Zhao M., Modeling thin graphene sheets in the WLP-FDTD algorithm with surface boundary condition, Progress In Electromagnetics Research Letters, 91, pp. 93-98, (2020)
  • [8] Sarker P. C., Rana M. M., Sarkar A. K., Modeling of graphene conductivity using FDTD in the near infrared frequency, 2nd International Conference on Electrical, Computer & Telecommunication Engineering (ICECTE), (2016)
  • [9] Hossain M. B., Muktadhir S., Rana M. M., Multi-structural optical devices modeling using graphene tri-layer sheets, Optik, 127, 15, pp. 5841-5851, (2016)
  • [10] Johns P. B., A symmetrical condensed node for the TLM method, IEEE Transactions on Microwave Theory and Techniques, 35, 4, pp. 370-377, (1987)