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首页> 外文期刊>Journal of Mathematical Sciences >DIFFRACTION OF ELECTRIC WAVES ON A CONE FORMED OF PERFECTLY MAGNETICALLY AND ELECTRICALLY CONDUCTING SURFACES
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DIFFRACTION OF ELECTRIC WAVES ON A CONE FORMED OF PERFECTLY MAGNETICALLY AND ELECTRICALLY CONDUCTING SURFACES

机译:电波在由完全磁和电的导电表面组成的圆锥体上的衍射

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摘要

We solve the problem of diffraction of the field of radial electric dipole on a cone whose surface is formed by finite perfectly magnetically conducting and truncated semiinfinite perfectly electrically conducting conical surfaces. The problem is solved by the Wiener-Hopf technique with the use of the Kon-torovich-Lebedev integral transformation. We obtain the exact solution of the problem in the static limit and its approximate solution in the low-frequency case. We deduce an expression for the directional pattern of a cone with perfectly absorbing vertex (within the framework of the Macdonald model). We also clarify the effect of the edge of absorbing fragment of the cone surface on its scattering properties.
机译:我们解决了圆锥表面上的径向电偶极子场的衍射问题,该圆锥体的表面由有限的完美导磁和截断的半无限的完美导电圆锥形表面形成。通过使用Kon-torovich-Lebedev积分变换的Wiener-Hopf技术解决了该问题。我们在静态极限中获得问题的精确解,在低频情况下获得其近似解。我们推导了具有完美吸收顶点的锥体的方向性模式的表达式(在Macdonald模型的框架内)。我们还阐明了锥表面吸收碎片的边缘对其散射特性的影响。

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  • 来源
    《Journal of Mathematical Sciences》 |2014年第2期|239-252|共14页
  • 作者

    D. B. Kurylyak;

  • 作者单位

    Karpenko Physicomechanical Institute, Ukrainian National Academy of Sciences, Lviv, Ukraine;

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  • 正文语种 eng
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