## Electromagnetic Wave InteractionsThis book is a collection of papers on electromagnetic wave mechanics and its applications written by experts in this field. It offers the reader a sampling of exciting research areas in this field. The topics include polarimetric imaging, radar spectroscopy, surface or creeping waves, bistatic radar scattering, the Seebeck affect. Mathematical methods include inverse scattering theory, singularity expansion method, mixed potential integral equation, method of moments, and diffraction theory. Applications include Cellular Mobile Radios (CMR), radar target identification, and Personal Communication Services (PCS). This book shows how electromagnetic wave theory is currently being utilized and investigated. It involves a modicom of mathematical physics and will be of interest to researchers and graduate students in electrical engineering, physics and applied mathematics. |

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### Contents

ClosedForm Greens Functions and Their | 1 |

Propagation Prediction in Cities for Wireless | 93 |

Propagation Prediction for Macrocellular Systems | 101 |

Introduction to Radar Polarimetry With | 139 |

Fundamental Field Equations | 149 |

polarization bases | 171 |

Change of Polarization Basis | 188 |

Optimal Polarization States | 196 |

Properties of Eigenterms of the Impedance Integral Equation | 287 |

Electromagnetic Eigenfrequencies of Conducting | 313 |

Penetrable Objects | 321 |

From Exact to Approximate Inverse Scattering | 333 |

Other IllPosed Features and How to Get Rid of Them | 339 |

PCS System Design Issues in the Presence | 353 |

Case Study | 363 |

369 | |

Modeling and Simulation of Chaff Scattering | 215 |

A Heterodyne Polarimetric Technique for Radiation | 269 |

Uniform Asymptotic Solution for the Diffraction of a Plane | 285 |

Author Index | 375 |

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amplitude angle antenna height approximation base station bistatic Boerner building height chaff circular circular polarization closed-form Green's functions coherent components computed coordinate diffraction eigenadmittance eigenmodes electric field Electromagnetic Wave ellipticity environment equation evaluated exponentials frequency geometry Green's functions horizontal IEEE IEEE Trans incident field integral Inverse Jones vector layer linear located magnetic measurements method microcell Microcellular Mobile Radio mode Mueller matrix obtained optical optimal orientation orthogonal path loss phase plane wave Poincaré Sphere polarimetric polarimetric radar polarization basis polarization ratio potential prediction Proc propagation radar cross section radar polarimetry received reflected rooftop rows of buildings scalar scattering matrix sector average shown in Figure signal slow fading ſº solution spatial-domain spectral-domain spherical Stokes parameters Stokes vector street subscriber surface current density target Tech theory transformation unit vectors variation vertical wire zero