Radiophysical processes in thin-film structures

D. Bezuglov, G. N. Shalamov, G. Sinyavsky, A. N. Zaichenko, L. Cherckesova, O. Manaenkova, A. Shein
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引用次数: 0

Abstract

In the presented article the radio physical processes proceeding in nonlinear parametric zonal systems (NPS) are analyzed. Such NPS are the foundation of parametric generators of signals, parametric modulators-amplifiers and many other types of parametric transducers on which resonance circuits that are widely applied in modern radio electronics are built. However, NPS with weak nonlinearity, working or on current subharmonics or on combination of frequencies, in the first zone of instability of electromagnetic oscillations, are still used. For implementation of further transition to thin-film structures with distributed parameters it is necessary to consider the mechanism of resonant circuit interaction with external influence of pumping and the process of parametric excitation of oscillations. It is important to analyze the nonlinear phenomena in the first and in the higher zones of instability of electromagnetic oscillations where current ultraharmonics are arising.
薄膜结构中的辐射物理过程
本文分析了非线性参数带状系统(NPS)中的无线电物理过程。这些NPS是信号参数发生器、参数调制器-放大器和许多其他类型的参数换能器的基础,在这些换能器上建立了广泛应用于现代无线电电子学的谐振电路。但是,在电磁振荡的第一不稳定区,仍然使用具有弱非线性、工作在电流次谐波或频率组合上的NPS。为了实现向分布参数薄膜结构的进一步过渡,有必要考虑谐振电路与外部泵浦影响的相互作用机制和振荡的参数激励过程。分析产生电流超谐波的电磁振荡第一不稳定区和高不稳定区的非线性现象是很重要的。
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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