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Chinese Academy of Sciences Institutional Repositories Grid
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柱形等离子体辐射场的数值计算和分析

文献类型:期刊论文

作者赵国伟 ; 陈诚 ; 徐跃民
刊名空间科学学报
出版日期2005
卷号25期号:2页码:93-98
ISSN号0254-6124
关键词柱形等离子体 等离子体密度 辐射方向图 电磁波 空间科学
其他题名Numerical Computation and Analysis on Radiation Field of the Plasma Column
通讯作者北京8701信箱
中文摘要参照金属辐射场的求解方法,在简化条件下计算出柱形等离子体行波传输和驻波传输的辐射图.当改变等离子体密度以及相关参数时,对应的辐射图会相应地发生变化,得出与信号在金属介质中传输相类似的结果.根据理想柱形等离子体表面波的色散关系得到波矢,求出的柱形等离子体辐射方向图与金属介质的辐射方向图相比,会发生较大的变化,因此利用等离子体进行信号传输有一定的价值.
英文摘要There are many ways to excite the plasma, surface waves can be used to excite the plasma from a single end. One of them is by means of capacitively coupled low-pressure Radio-frequency (RF) discharge, plasma surfaces can be suspended in free space to serve as antenna elements. The surface wave driven plasma antenna produces sufficiently low noise so as to be useful for broadcast communications. When frequencies well below the plasma frequency,the plasma surface wave also propagates near the speed of Light just as on a metal-dielectric interface.According to opproach of radiation pattern of metal,the radiation patterns of travelling wave and standing wave transmitting in a column plasma in simple conditions are calculated.When relevant parameters like plasma density are changed, radiation pattern also changes correspondingly.Compared with metal, there are similar results.Using wave vector from dispersion relation of the plasma surface wave for an ideal column plasma, radiation pattern will change greaterly compared with radiation pattern in metal.Radiation pattern of plasma column can be controlled by changing plasma parameters, so utilizing plasma to transmitting the signal,there are certain reference meanings.
学科主题空间环境
资助信息中国科学院空间科学与应用研究中心知识创新领域前沿课题
收录类别CSCD
语种中文
CSCD记录号CSCD:1920714
源URL[http://ir.cssar.ac.cn/handle/122/109]  
专题国家空间科学中心_保障部/保障与试验验证中心
推荐引用方式
GB/T 7714
赵国伟,陈诚,徐跃民. 柱形等离子体辐射场的数值计算和分析[J]. 空间科学学报,2005,25(2):93-98.
APA 赵国伟,陈诚,&徐跃民.(2005).柱形等离子体辐射场的数值计算和分析.空间科学学报,25(2),93-98.
MLA 赵国伟,et al."柱形等离子体辐射场的数值计算和分析".空间科学学报 25.2(2005):93-98.

入库方式: OAI收割

来源:国家空间科学中心

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