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高功率微波在低电离层中传输特性分析
引用本文:侯德亭,邹伟,周东方,余道杰,杨建宏. 高功率微波在低电离层中传输特性分析[J]. 强激光与粒子束, 2005, 17(8): 1239-1242
作者姓名:侯德亭  邹伟  周东方  余道杰  杨建宏
作者单位:解放军信息工程大学,理学院,河南,郑州,450002;浙江大学,信息科学与工程学院,浙江,杭州,310000;解放军信息工程大学,理学院,河南,郑州,450002
基金项目:国家863计划项目资助课题
摘    要: 高功率微波在大气中传输有一个衰减较大的高度,在这一高度,微波的强电场容易使大气电离形成等离子体,从而引起较大的非线性衰减,极端情况下会产生大气击穿。在低电离层(50~100 km),自然电离产生的电子浓度较高。主要研究高功率微波在低电离层的传输衰减特性。计算表明,在50 km高空,非线性吸收衰减最大,该高度也是最容易产生击穿的地方。在同样的电场强度下,脉宽越窄,衰减系数越小,衰减越小。在低电离层区间内,大气压强越小,吸收越小。

关 键 词:电离层  电离频率  非线性衰减  衰减系数
文章编号:1001-4322(2005)08-1239-04
收稿时间:2004-10-08
修稿时间:2005-05-08

Characteristic of high-power microwave propagating through lower ionosphere
HOU De-ting,ZOU Wei,ZHOU Dong-fang,YU Dao-jie,YANG Jian-hong. Characteristic of high-power microwave propagating through lower ionosphere[J]. High Power Laser and Particle Beams, 2005, 17(8): 1239-1242
Authors:HOU De-ting  ZOU Wei  ZHOU Dong-fang  YU Dao-jie  YANG Jian-hong
Affiliation:1. College of Science, PLA Information Engineering University, P.O.Box 2201-160, Zhengzhou 450002, China;2. College of Information Science and Engineering, Zhejiang University, Hangzhou 310000, China
Abstract:Severe attenuation happens when the high-power microwave propagates through a certain altitude. At this altitude, the microwave pulse will ionize the surrounding air and create a plasma, so the severe nonlinear attenuation will be caused, even the breakdown will happen. At the lower ionosphere, the density of the natural ionized free electrons is very intensive. The characteristic of the attenuation when high-power microwave propagates through the lower ionosphere is analyzed in this paper. Calculations indicate that the maximal nonlinear absorption attenuation occurs at the altitude of 50 km. This altitude is very possible to be breakdown. At the same electric-field intensity, the narrower the pulse duration is, the smaller the attenuation coefficient is. At the lower ionosphere, the attenuation decreases with decrease of the atmosphere pressure intensity.
Keywords:lonosphere   Ionization frequeney   Nonlinear attenuation   Attenuation eoeffieient
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