Mathematic Modelling of Nonlinear Parametric Zonal Transducers of SubTHz and THz Bands on the Base of Graphene and Carbon Nanotubes

L. Cherckesova, D. Bezuglov, V. Porksheyan, I. Smirnov, G. P. Sinyavskiy, B. Akishin
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引用次数: 1

Abstract

In the offered examination the mathematical modelling of interaction processes of electromagnetic waves with composite substances nanostructures and electrodynamic structures on the base of graphene and carbon nanotubes is made. Models are grounded on solution of diffraction boundary–value 3D problems for Maxwell’s equations with electrodynamic boundary conditions. Principles of subTHz and THz frequency bands controlled arrangements construction – filters, modulators, polarizers, etc., on the base of nanostructures by type «graphene – dielectric», lattices by type «carbon nanotube–graphene», graphene metasurfaces, etc., and also nonlinear parametric zonal transducers – amplifiers and generators on the base of graphene nanostructures are researched. Creation of radioelectronic instrumentation and equipment of new generation, capable to work in subTHz and THz frequency bands, will cause the rapid development of informational telecommunications of XXI–st century.
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基于石墨烯和碳纳米管的亚太赫兹和太赫兹波段非线性参数区域换能器的数学建模
本文建立了基于石墨烯和碳纳米管的复合材料、纳米结构和电动力结构与电磁波相互作用过程的数学模型。模型建立在具有电动力边界条件的麦克斯韦方程组的衍射边值三维问题的解的基础上。研究了基于“石墨烯-介电”纳米结构、“碳纳米管-石墨烯”晶格、石墨烯超表面等纳米结构的亚太赫兹和太赫兹频段控制结构——滤波器、调制器、偏振器等的原理,以及基于石墨烯纳米结构的非线性参数区域换能器——放大器和发生器。能够在次太赫兹和太赫兹频段工作的新一代无线电电子仪器和设备的产生,将导致21世纪信息通信的快速发展。
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