Nonlinear composite media on opal matrixes and metallocarbon nanostructures

G. Sinyavsky, L. Cherckesova, D. Bezuglov, G. N. Shalamov
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Abstract

Examination of nonlinear periodic composite media based on opal matrices and metal-carbon nanostructures is conducted. This can constitute a new element base opening possibilities for the modern radioelectronics. The considered nanostructures have the substantial potential for their application in perspective nanotechnologies directed on creation of radioelectronic devices for SHF, EHF and HHF bands (microwave, sub-THz and THz ranges). They allow improving the functional characteristics of the arrangements made on their base. Nanostructures construction with preset properties is important for design of sub-THz and THz radioelectronics. Such properties can ensure an opportunity of nanostructures controlling, based on which it is possible to realize the nonlinear parametric zonal systems (NPS) resonance circuits functioning on current ultraharmonics in the highest zones of electromagnetic oscillations instability.
蛋白石基体与金属碳纳米结构的非线性复合介质
对基于蛋白石基质和金属碳纳米结构的非线性周期性复合介质进行了研究。这可以构成一个新的元素基础,为现代无线电电子学开辟可能性。所考虑的纳米结构具有巨大的应用潜力,可以用于制造超高频、超高频和高频波段(微波、次太赫兹和太赫兹范围)的无线电电子器件。它们可以改进在其基础上作出的安排的功能特点。具有预设性能的纳米结构对于亚太赫兹和太赫兹无线电电子器件的设计具有重要意义。这样的特性为纳米结构的控制提供了机会,在此基础上实现在电磁振荡不稳定性最高区域的电流超谐波上工作的非线性参数区域系统(NPS)谐振电路成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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