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电场垂直入射面的非均匀电磁波在导电媒质界面的类全反射横向偏移
引用本文:刘福平,张红梅,杨长春,李瑞忠,王安玲,高杰.电场垂直入射面的非均匀电磁波在导电媒质界面的类全反射横向偏移[J].地球物理学报,2005,48(4):924-931.
作者姓名:刘福平  张红梅  杨长春  李瑞忠  王安玲  高杰
作者单位:1.北京印刷学院,北京 102600 2 中国科学院地质与地球物理研究所,北京 100029 3 石油大学(北京),资源与信息学院,北京 102249
基金项目:北京印刷学院信号与信息处理重点建设学科项目,中国科学院知识创新重大项目(KZCX1-SW-18-04),北京市教育委员会科技发展计划面上项目(KM200510015003),北京印刷学院引进人才科研项目联合资助.
摘    要:利用电磁波在导电媒质界面反射系数的附加相角,导出了电场垂直于入射面的非均匀电磁波在导电介质界面的类全反射横向偏移,并对横向偏移进行了相关计算,绘出了横向偏移随入射角的变化曲线. 结果表明:入射角在相移常数临界角、衰减常数临界角和90°处,横向偏移曲线存在三个间断点. 当入射角等于这三个角时,横向偏移为无穷大,即电磁波将沿界面传播;当入射角在这三个角附近时,横向偏移变得非常大.

关 键 词:横向偏移  类全反射  非均匀电磁波  相移角  导电媒质  
文章编号:0001-5733(2005)04-0924-08
收稿时间:2004-06-05
修稿时间:2005-04-04

Lateral shift of quasi total reflection of inhomogeneous electromagnetic wave in the electric field perpendicular to the incident plane
LIU Fu-ping,ZHANG Hong-Mei,YANG Chang-chun,LI Rui-Zhong,WANG An-ling,GAO Jie.Lateral shift of quasi total reflection of inhomogeneous electromagnetic wave in the electric field perpendicular to the incident plane[J].Chinese Journal of Geophysics,2005,48(4):924-931.
Authors:LIU Fu-ping  ZHANG Hong-Mei  YANG Chang-chun  LI Rui-Zhong  WANG An-ling  GAO Jie
Institution:1.Beijing Institute of Graphic Communication, Beijing 102600, China 2 Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China 3 University of Petroleum, Beijing Changping, 102249,China
Abstract:According to the phase difference of reflection coefficients, we derive the lateral shift of quasi total reflection of inhomogeneous electromagnetic wave when the electric field is perpendicular to the incident plane. At the same time, we calculate the shift of low frequency electromagnetic wave and draw the curves which vary with the incident angle. The results show that there are three discontinuity points at the critical angle of the phase constant, the critical angle of attenuation constant and 90°. When the incident angle equals one of the three angles, the lateral shift will become infinite, i.e. the electromagnetic wave will propagate along the interface. When the incident angle is around the three angles, the lateral shift is very large.
Keywords:Lateral shift  Quasi total reflection  Inhomogeneous electromagnetic wave  Phase angle  Conductive medium
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