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About New Generation of Resonant Circuits On Base of Ultraharmonic Parametric Transducers In Magnetophotonic Composite Nanomedia

机译:关于磁光子复合纳米介质中基于超谐参量传感器的新一代谐振电路

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Development of informational – communicative technologies and radioelectronics of XXI century is related to transmission more and more incrementing data volumes at all, and is oriented on application not only microwave frequencies (SHF), but also subTHz and THz (EHF and HHF) ranges – from 0,1 to 10 THz. Arrangements of these bands are divided into 2 levels: up to 1 THz use the electronic devices, and above 1 THz – already photonic devices. Photonic engineering technologies development has more and more increasing value, both in telecommunications, and in the space systems of communication. In this report, optical properties of nano– and microparticles using in magnetophotonic nanostructures are investigated. They are capable to ensure optimally the functioning effectiveness at the creation of the new element baseline of home Russian radioelectronics that is especially important for the problem solution of import substitution. Making of the functional equipment of new generation, capable to work in subTHz and THz frequency bands, will entail the impetuous rapid development of XXI–st century information communications.
机译:二十一世纪信息通信技术和无线电电子学的发展与传输越来越多的增量数据量有关,不仅针对微波频率(SHF),而且还针对次太赫兹和太赫兹(EHF和HHF)范围的应用。 0.1至10 THz这些频段的安排分为2个级别:使用电子设备的频率高达1 THz,使用1 THz以上的频率–已经是光子设备。光子工程技术的发展在电信和通信空间系统中具有越来越大的价值。在本报告中,研究了在磁光子纳米结构中使用的纳米粒子和微粒的光学特性。他们有能力在创建俄罗斯家用无线电电子设备的新元素基线时,以最佳的方式确保功能有效性,这对于解决进口替代问题尤为重要。能够在亚太赫兹和太赫兹频段工作的新一代功能设备的制造,将带动二十一世纪信息通信的迅猛发展。

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