000 09518nam a2201069 i 4500
001 5732786
003 IEEE
005 20220712205755.0
006 m o d
007 cr |n|||||||||
008 151221s1996 nyua ob 001 eng d
010 _z 96022174 (print)
020 _a9780470546598
_qebook
020 _z9780780334113
_qprint
020 _z0780334116
_qIEEE
020 _z047054659X
_qelectronic
020 _z0198592256
_qOUP
024 7 _a10.1109/9780470546598
_2doi
035 _a(CaBNVSL)mat05732786
035 _a(IDAMS)0b000064814ebff6
040 _aCaBNVSL
_beng
_erda
_cCaBNVSL
_dCaBNVSL
050 4 _aQC670
_b.C45 1996eb
082 0 4 _a530.1/41
_222
100 1 _aClemmow, P. C.,
_eauthor.
_927620
245 1 4 _aThe plane wave spectrum representation of electromagnetic fields /
_cP.C. Clemmow.
264 1 _aNew York :
_bInstitute of Electrical and Electronics Engineers,
_c1996.
264 2 _a[Piscataqay, New Jersey] :
_bIEEE Xplore,
_c[1996]
300 _a1 PDF (ix, 188 pages) :
_billustrations.
336 _atext
_2rdacontent
337 _aelectronic
_2isbdmedia
338 _aonline resource
_2rdacarrier
490 1 _aIEEE press series on electromagnetic wave theory ;
_v7
500 _a"IEEE Antennas and Propagation Society, sponsor."
500 _aOriginally published: Pergamon Press, 1966.
504 _aIncludes bibliographical references (p. 181-183) and index.
505 0 _aPART I. THEORY -- I. PRELIMINARIES -- 1.1. Objective -- 1.2. Maxwell's Equations -- 1.3. Fourier Integral Analysis -- II. PLANE WAVE REPRESENTATION -- 2.1. Plane Waves -- 2.1.1. Homogeneous Plane Waves in Vacuum -- 2.1.2. Inhomogeneous Plane Waves in Vacuum -- 2.1.3. Plane Waves in an Isotropic Medium -- 2.1.4. Plane Waves in an Anisotropic Medium -- 2.1.5. An Example -- 2.2. Angular Spectrum of Plane Waves -- 2.2.1. Plane Surface Currents -- 2.2.2. Angular Spectrum in Vacuum: Two-dimensional Case -- 2.2.3. Simple Examples: Line-sources -- 2.2.4. Angular Spectrum in Vacuum: Three-dimensional Case -- 2.2.5. Simple Example: Dipole Source -- 2.2.6. Angular Spectrum in an Anisotropic Medium -- III. SUPPLEMENTARY THEORY -- 3.1. Radiated Power -- 3.1.1. The Two-dimensional Case -- 3.1.2. The Three-dimensional Case -- 3.2. The Radiation Field -- 3.2.1. Heuristic Approach: Stationary Phase -- 3.2.2. Rigorous Approach: Steepest Descents -- 3.3. Angular Spectrum with Simple Pole -- 3.3.1. The Complex Fresnel Integral -- 3.3.2. Reduction to Fresnel Integral -- 3.3.3. Steepest Descents with Saddle-point Near a Pole -- 3.4. Relation to other Representations -- 3.5. Gain and Supergain -- PART II. APPLICATION -- IV. DIFFRACTION BY A PLANE SCREEN -- 4.1. Black Screen -- 4.1.1. Formulation of the Problem -- 4.1.2. The Half-plane -- 4.1.3. The Slit -- 4.2. Perfectly Conducting Screen -- 4.2.1. Babinet's Principle and the Cross-section Theorem -- 4.2.2. The Half-plane -- 4.2.3. The Wide Slit -- 4.2.4. The Narrow Slit -- 4.2.5. Line-source -- V. PROPAGATION OVER A UNIFORM PLANE SURFACE -- 5.1. Radio Propagation over a Homogeneous Earth -- 5.1.1. Reflection Coefficients for Plane Wave Incidence -- 5.1.2. Solution for a Localized Source: J5-polarization -- 5.1.3. Solution for a Localized Source: jET-polarization -- 5.1.4. Special Cases -- 5.2. Surface Waves -- 5.2.1. Reactive Surfaces -- 5.2.2. Generation of a Surface Wave -- 5.2.3. Launching Efficiency -- VI. PROPAGATION OVER A TWO-PART PLANE SURFACE.
505 8 _a6.1. Perfectly Conducting Half-plane on Surface of Semi-infinite Homogeneous Medium -- 6.1.1. Genesis and Nature of the Problem -- 6.1.2. Solution for Incident Plane Wave: If-polarization -- 6.1.3. Solution for Line-source: if-polarization -- 6.1.4. Reduction of the Solution -- 6.1.5. Special Cases -- 6.2. Two-part Impedance Surface -- 6.2.1. Solution for Incident Plane Wave: -polarization -- 6.2.2. The Split of sin ft + / sinhy -- 6.2.3. Surface Wave Reflection and Transmission -- VII. THE FIELD OF A MOVING POINT CHARGE -- 7.1. Motion in a Plane -- 7.1.1. General Formulation -- 7.1.2. Periodic Motion: Uniform Circular Motion -- 7.2. Uniform Rectilinear Motion -- 7.2.1. Motion in a Vacuum -- 7.2.2. Motion in a Dielectric: Cerenkov Radiation -- VIIL SOURCES IN ANISOTROPIC MEDIA -- 8.1. Uniaxial Medium -- 8.1.1. The Dielectric Tensor -- 8.1.2. Surface Currents in Plane Normal to Axis -- 8.1.3. Dipole Normal to Axis -- 8.1.4. Surface Currents in Plane Parallel to Axis -- 8.1.5. Dipole Parallel to Axis -- 8.1.6. Point Charge in Uniform Motion Parallel to Axis -- 8.1.7. TE and TM Resolution -- 8.2. Magneto-ionic Medium -- 8.2.1. Surface Currents in Plane Normal to Magnetostatic Field -- 8.2.2. Surface Currents in Plane Parallel to Magnetostatic Held -- 8.2.3. Point Charge in Uniform Motion Parallel to Magnetostatic Field -- ANNOTATED BIBLIOGRAPHY -- INDEX.
506 1 _aRestricted to subscribers or individual electronic text purchasers.
520 _aElectrical Engineering/Electromagnetics The Plane Wave Spectrum Representation of Electromagnetic Fields A classic reissue in the IEEE/OUP Series on Electromagnetic Wave Theory Donald G. Dudley, Series Editor"I am pleased to see that the IEEE Press and OUP have secured the rights to republish this excellent monograph ... a long-cherished exposition on the angular spectrum concept."-James R. WaitThe purpose of this book is to explain how general electromagnetic fields can be represented by the superposition of plane waves traveling in diverse directions, and to illustrate the way in which this plane wave spectrum representation can be put to good use in treating various characteristic problems belonging to the classical theories of radiation, diffraction and propagation. The book offers a largely unified theory of a range of problems, solutions to all of which are obtained in forms at least patently capable of yielding numerical results by straightforward means. The reader is assumed to be competent at integration in the complex plane, but otherwise the discussion is virtually self-contained. The aim is to furnish the student of electromagnetic theory with a useful technical tool and a comparatively compact account of some interesting aspects of his discipline. The contents are presented in two parts. The first, under the heading of Theory, covers Preliminaries, Plane wave representations; and Supplementary theory. The second, with the heading Application, deals with Diffraction by a plane screen; Propagation over a uniform plane surface; Propagation over a two-part plane surface; The field of a moving point charge; and Sources of anisotropic media.Also in the series...Field Computation by Moment Method An IEEE/OUP classic reissue R. F. Harrington, Syracuse University 1995, Hardcover, 240 pp.Waves and Fields in Inhomogeneous Media An IEEE/OUP classic reissue Weng Cho Chew, University of Illinois at Urbana-Champaign 1995, Hardcover, 632 pp.Methods in Electromagnetic Wave Propagation Second Edition D.S. Jones, University of Dundee 1994, Hardcover, 686 pp.About the seriesFormerly the IEEE Press Series on Electromagnetic Waves, this new joint series between IEEE Press and Oxford University Press offers even better coverage of the field with new titles as well as reprintings and revisions of recognized classics that maintain long-term archival significance in electromagnetic waves and applications. Designed specifically for graduate students, practicing engineers, and researchers, this series provides affordable volumes that explore electromagnetic waves and applications beyond the undergraduate level.
530 _aAlso available in print.
538 _aMode of access: World Wide Web
588 _aDescription based on PDF viewed 12/21/2015.
650 0 _aElectromagnetic waves.
_93428
650 0 _aElectromagnetic fields.
_96919
655 0 _aElectronic books.
_93294
695 _aApertures
695 _aApproximation methods
695 _aAttenuation
695 _aBibliographies
695 _aBooks
695 _aConductivity
695 _aCurrent
695 _aCurrent density
695 _aCurrent distribution
695 _aDielectrics
695 _aDiffraction
695 _aEarth
695 _aElectromagnetic fields
695 _aElectromagnetics
695 _aFinite element methods
695 _aHarmonic analysis
695 _aIndexes
695 _aInterference
695 _aMagnetic fields
695 _aMagnetic resonance imaging
695 _aMagnetic separation
695 _aMagnetostatic waves
695 _aMagnetostatics
695 _aMaxwell equations
695 _aMedia
695 _aPermeability
695 _aPermittivity
695 _aPerpendicular magnetic anisotropy
695 _aPoles and zeros
695 _aReceivers
695 _aReflection
695 _aSea surface
695 _aSolids
695 _aSurface impedance
695 _aSurface treatment
695 _aSurface waves
695 _aTime frequency analysis
695 _aTrajectory
695 _aTransmitters
710 2 _aJohn Wiley & Sons,
_epublisher.
_96902
710 2 _aIEEE Antennas and Propagation Society.
_926439
710 2 _aIEEE Xplore (Online service),
_edistributor.
_927621
776 0 8 _iPrint version:
_z9780780334113
830 0 _aIEEE/OUP series on electromagnetic wave theory ;
_v7
_927622
856 4 2 _3Abstract with links to resource
_uhttps://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=5732786
942 _cEBK
999 _c74121
_d74121