000 07176nam a2200913 i 4500
001 5237526
003 IEEE
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006 m o d
007 cr |n|||||||||
008 070327t20152007njua ob 001 0 eng d
020 _a9780470109014
_qelectronic
020 _z9781118753668
_qpaper
020 _z0470109017
_qelectronic
024 7 _a10.1002/0470109017
_2doi
035 _a(CaBNVSL)mat05237526
035 _a(IDAMS)0b000064810958d4
040 _aCaBNVSL
_beng
_erda
_cCaBNVSL
_dCaBNVSL
050 4 _aQC665.D5
_bU35 2007eb
082 0 4 _a621.382/4
_222
100 1 _aUfimtsev, Pyotr Yakovlevich.
_eauthor.
_926465
245 1 0 _aFundamentals of the physical theory of diffraction /
_cPyotr Ya. Ufimtsev.
264 1 _aHoboken, New Jersey :
_bWiley-Interscience,
_cc2007.
300 _a1 PDF (xvii, 329 pages) :
_billustrations.
336 _atext
_2rdacontent
337 _aelectronic
_2isbdmedia
338 _aonline resource
_2rdacarrier
504 _aIncludes bibliographical references (p. 315-321) and index.
505 0 _aForeword. -- Preface. -- Acknowledgments. -- Introduction. -- 1. Basic Notions in Acoustic and Electromagnetic Diffraction Problems. -- 1.1 Formulation of the Diffraction Problem. -- 1.2 Scattered Field in the Far Zone. -- 1.3 Physical Optics. -- 1.4 Nonuniform Component of Induced Surface Field. -- 1.5 ElectromagneticWaves. -- Problems. -- 2. Wedge Diffraction: Exact Solution and Asymptotics. -- 2.1 Classical Solutions. -- 2.2 Transition to the PlaneWave Excitation. -- 2.3 Conversion of the Series Solution to the Sommerfeld Integrals. -- 2.4 The Sommerfeld Ray Asymptotics. -- 2.5 The Pauli Asymptotics. -- 2.6 Uniform Asymptotics: Extension of the Pauli Technique. -- 2.7 Comments on Alternative Asymptotics. -- Problems. -- 3. Wedge Diffraction: The Physical Optics Field. -- 3.1 Original PO Integrals. -- 3.2 Conversion of the PO Integrals to the Canonical Form. -- 3.3 Ray Asymptotics for the PO Diffracted Field. -- Problems. -- 4. Wedge Diffraction: Radiation by the Nonuniform Component of Surface Sources. -- 4.1 Integrals and Asymptotics. -- 4.2 Integral Form of Functions f(1) and g(1). -- 4.3 Oblique Incidence of a PlaneWave at aWedge. -- Problems. -- 5. First-Order Diffraction at Strips and Polygonal Cylinders. -- 5.1 Diffraction at a Strip. -- 5.2 Diffraction at a Triangular Cylinder. -- Problems. -- 6. Axially Symmetric Scattering of AcousticWaves at Bodies of Revolution. -- 6.1 Diffraction at a Canonical Conic Surface. -- 6.2 Scattering at a Disk. -- 6.3 Scattering at Cones: Focal Field. -- 6.4 Bodies of Revolution with Nonzero Gaussian Curvature: Backscattered Focal Fields. -- 6.5 Bodies of Revolution with Nonzero Gaussian Curvature: Axially Symmetric Bistatic Scattering. -- Problems. -- 7. Elementary Acoustic and Electromagnetic EdgeWaves. -- 7.1 Elementary Strips on a CanonicalWedge. -- 7.2 Integrals for j(1), Elementary Strips. -- 7.3 Triple Integrals for Elementary EdgeWaves.
505 8 _a7.4 Transformation of Triple Integrals into One-Dimensional Integrals. -- 7.5 General Asymptotics for Elementary EdgeWaves. -- 7.6 Analytic Properties of Elementary EdgeWaves. -- 7.7 Numerical Calculations of Elementary EdgeWaves. -- 7.8 Electromagnetic Elementary EdgeWaves. -- 7.9 Improved Theory of Elementary EdgeWaves. -- 7.10 Some References Related to Elementary EdgeWaves. -- Problems. -- 8. Ray and Caustics Asymptotics for Edge DiffractedWaves. -- 8.1 Ray Asymptotics. -- 8.2 Caustic Asymptotics. -- Problems. -- 9. Multiple Diffraction of EdgeWaves: Grazing Incidence and Slope Diffraction. -- 9.1 Statement of the Problem and Related References. -- 9.2 Grazing Diffraction. -- 9.3 Slope Diffraction in the Configuration of Figure 9.1. -- 9.4 Slope Diffraction: General Case. -- Problems. -- 10. Diffraction Interaction of Neighboring Edges on a Ruled Surface. -- 10.1 Diffraction at an Acoustically Hard Surface. -- 10.2 Diffraction at an Acoustically Soft Surface. -- 10.3 Diffraction of ElectromagneticWaves. -- Problems. -- 11. Focusing of Multiple Acoustic EdgeWaves Diffracted at a Convex Body of Revolution with a Flat Base. -- 11.1 Statement of the Problem and its Characteristic Features. -- 11.2 Multiple Hard Diffraction. -- 11.3 Multiple Soft Diffraction. -- Problems. -- 12. Focusing of Multiple EdgeWaves Diffracted at a Disk. -- 12.1 Multiple Hard Diffraction. -- 12.2 Multiple Soft Diffraction. -- 12.3 Multiple Diffraction of ElectromagneticWaves. -- Problems. -- 13. Backscattering at a Finite-Length Cylinder. -- 13.1 AcousticWaves. -- 13.2 ElectromagneticWaves. -- Problems. -- 14. Bistatic Scattering at a Finite-Length Cylinder. -- 14.1 AcousticWaves. -- 14.2 ElectromagneticWaves. -- Problems. -- Conclusion. -- References. -- Index.
506 1 _aRestricted to subscribers or individual electronic text purchasers.
520 _aThis book is the first complete and comprehensive description of the modern Physical Theory of Diffraction (PTD) based on the concept of elementary edge waves (EEWs). The theory is demonstrated with the example of the diffraction of acoustic and electromagnetic waves at perfectly reflecting objects. The derived analytic expressions clearly explain the physical structure of the scattered field and describe in detail all of the reflected and diffracted rays and beams, as well as the fields in the vicinity of caustics and foci. Shadow radiation, a new fundamental component of the field, is introduced and proven to contain half of the total scattered power.
530 _aAlso available in print.
538 _aMode of access: World Wide Web.
588 _aDescription based on PDF viewed 12/18/2015.
650 0 _aElectromagnetic waves
_xDiffraction.
_910404
650 0 _aDiffractive scattering.
_926466
655 0 _aElectronic books.
_93294
695 _aAcoustic diffraction
695 _aAcoustic waves
695 _aAcoustics
695 _aApproximation methods
695 _aBackscatter
695 _aBibliographies
695 _aBooks
695 _aBoundary conditions
695 _aChapters
695 _aConvergence
695 _aDiffraction
695 _aElectromagnetic diffraction
695 _aElectromagnetic scattering
695 _aElectromagnetics
695 _aEquations
695 _aFace
695 _aFocusing
695 _aGeometrical optics
695 _aGeometry
695 _aIndexes
695 _aIntegral equations
695 _aMaterials
695 _aMathematical model
695 _aOptical diffraction
695 _aOptical surface waves
695 _aPhysical optics
695 _aPhysical theory of diffraction
695 _aRegions
695 _aScattering
695 _aSonar
695 _aStrips
695 _aSurface acoustic waves
695 _aSurface waves
695 _aTransforms
695 _aVectors
695 _aWave functions
710 2 _aIEEE Xplore (Online service),
_edistributor.
_926467
776 0 8 _iPrint version:
_z9781118753668
856 4 2 _3Abstract with links to resource
_uhttps://ieeexplore.ieee.org/xpl/bkabstractplus.jsp?bkn=5237526
942 _cEBK
999 _c73781
_d73781