论微纳米级磁光/磁光子结构制造的可能性

D. Bezuglov, Julia A. Shokova, L. Cherckesova, B. Akishin, M. Zvezdina, V. Porksheyan, I. Trubchik, P. S. Budyakov
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引用次数: 0

摘要

21世纪无线电电子和信息通信技术的发展与不断增加的数据量的接收和传输有关,并以次太赫兹和太赫兹频率范围(0.1 - 10太赫兹)的应用为导向。纳米光子技术的进步在通信和空间通信系统中具有越来越大的应用价值。研究了用于磁光子结构的微粒子和纳米粒子(包括球形粒子)的光学性质。研究这些介质中的物理现象和过程,可以为无线电电子学新元素基线的制作提供最佳的效率支持。创造能够在次太赫兹和太赫兹范围内工作的新一代多用途安排将需要电信和21世纪通信系统的进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
About Possibility of Magnetooptical/Magnetophotonic Structures Making of Micro- and Nano- Level
Development of radioelectronics and informational-communicational technologies of the XXI-st century is related to reception and transmission of constantly incrementing data volumes and oriented on application of sub-THz and THz frequency ranges (0.1 - 10 THz). Nano-photonic technologies progress has the increasing value as for telecommunication and space communication systems. In the work an optical properties of micro-and nanoparticles, including spherical, using in magnetophotonic structures are explored. Investigation of the physical phenomena and processes in such media can optimally support their efficiency for making of new element baseline of radioelectronics. Multipurpose arrangement creating of new generation, capable to function in subTHz and THz ranges, will entail the progress of telecommunication and XXI-st century communication systems.
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