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Studies on omnidirectional enhancement of giga-hertz radiation by sub-wavelength plasma modulation

机译:亚波长等离子体调制对千兆赫兹辐射的全向增强研究

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摘要

The technology of radio frequency (RF) radiation intensification for radio compact antennas based on modulation and enhancement effects of sub-wavelength plasma structures represents an innovative developing strategy. It exhibits important scientific significance and promising potential of broad applications in various areas of national strategic demands, such as electrical information network and microwave communication, detection and control technology. In this paper, laboratory experiments and corresponding analyses have been carried out to investigate the modulation and enhancement technology of sub-wavelength plasma structure on the RF electromagnetic radiation. An application focused sub-wavelength plasma-added intensification up to similar to 7 dB higher than the free-space radiation is observed experimentally in giga-hertz (GHz) RF band. The effective radiation enhancement bandwidth covers from 0.85 to 1.17 GHz, while the enhanced electromagnetic signals transmitted by sub-wavelength plasma structures maintain good communication quality. Particularly, differing from the traditional RF electromagnetic radiation enhancement method characterized by focusing the radiation field of antenna in a specific direction, the sub-wavelength plasma-added intensification of the antenna radiation presents an omnidirectional enhancement, which is reported experimentally for the first time. Corresponding performance characteristics and enhancement mechanism analyses are also conducted in this paper. The results have demonstrated the feasibility and promising potential of sub-wavelength plasma modulation in application focused RF communication, and provided the scientific basis for further research and development of sub-wavelength plasma enhanced compact antennas with wide-range requests and good quality for communication.
机译:基于亚波长等离子体结构的调制和增强效应的无线电小型天线的射频(RF)辐射技术代表了一种创新的发展策略。它在国家战略要求的各个领域展示了重要的科学意义和广泛应用的潜力,例如电气信息网络和微波通信,检测和控制技术。在本文中,已经进行了实验室实验和相应的分析,以研究亚波长等离子体结构对RF电磁辐射的调制和增强技术。在基于GIGA-HERTZ(GHz)RF频带中,观察到高于比自由空间辐射高于自由空间辐射的7dB的应用聚焦的子波长等离子体增强。有效的辐射增强带宽从0.85到1.17GHz覆盖,而通过子波长等离子体结构传输的增强电磁信号保持良好的通信质量。特别地,与传统的RF电磁辐射增强方法不同,其特征在于通过在特定方向上聚焦天线的辐射场,天线辐射的子波长等离子体增强呈现出全向增强,这是首次通过实验报告的全向增强。本文还进行了相应的性能特征和增强机制分析。结果表明,应用聚焦的RF通信中的亚波长等离子体调制的可行性和有希望的潜力,并为进一步研究和开发具有广泛请求和良好的通信质量的副波长等离子体增强的紧凑型天线的科学依据提供了科学依据。

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