A Comparative Analysis of Graphene Cladding Rectangular Waveguides Filled with Various Materials for 1.65 THz Ablation System

H. K. Polat
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Abstract

Today, cancer diagnosis and treatment with the THz radiation model (THz wave ablation) is a subject of interest to researchers. The design performance of THz ablation systems depends on the design of a waveguide that will provide low-loss transmission of radiation from the antenna to the tissue. In this study, first of all, the superiority of graphene over noble metal is demonstrated. Then, the performance of THz rectangular waveguides which use graphene cladding and different core materials such as Silicon (Si), Silica (SiO2), Zeonex, Teflon, and PMMA (Polymethyl methacrylate) are comparatively investigated. The electromagnetic field distribution, transmission coefficients (S21), attenuation constant (dB/mm), and effective refractive index (neff) are analyzed in Computer Simulation Technology Studio Suit software to see the effect of various core materials on the characteristic of rectangular waveguides. Obtained simulation results show that Si, Teflon, and Zeonex have high transmission performance with ≈-0.5 dB. In addition, in the wavelength range where the operating performance of the waveguide is examined, Teflon and Zeonex perform well with an attenuation constant of less than 0.096 dB/mm. Electric field distributions of Teflon and Zeonex confirm that the transmission performance is better than others. In conclusion, Teflon and Zeonex materials are handy and promising for the 1.65 THz ablation system.
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用于 1.65 太赫兹消融系统的填充了各种材料的石墨烯包层矩形波导的比较分析
如今,利用太赫兹辐射模型(太赫兹波消融)诊断和治疗癌症已成为研究人员感兴趣的课题。太赫兹消融系统的设计性能取决于波导的设计,它将提供从天线到组织的低损耗辐射传输。在本研究中,首先证明了石墨烯优于贵金属。然后,比较研究了使用石墨烯包层和不同芯材(如硅、二氧化硅、Zeonex、聚四氟乙烯和聚甲基丙烯酸甲酯)的太赫兹矩形波导的性能。利用 Computer Simulation Technology Studio Suit 软件分析了电磁场分布、传输系数(S21)、衰减常数(dB/mm)和有效折射率(neff),以了解各种芯材对矩形波导特性的影响。模拟结果表明,硅、聚四氟乙烯和 Zeonex 具有较高的传输性能(≈-0.5 dB)。此外,在考察波导工作性能的波长范围内,聚四氟乙烯和 Zeonex 的性能良好,衰减常数小于 0.096 dB/mm。Teflon 和 Zeonex 的电场分布证实其传输性能优于其他材料。总之,聚四氟乙烯和 Zeonex 材料对于 1.65 太赫兹烧蚀系统来说非常方便且前景广阔。
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