Fundamentals of the physical theory of diffraction:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Hoboken, NJ
Wiley
2007
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references and index |
Beschreibung: | XVII, 329 S. |
ISBN: | 047009771X 9780470097717 |
Internformat
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100 | 1 | |a Ufimcev, Petr Ja. |e Verfasser |0 (DE-588)138659761 |4 aut | |
245 | 1 | 0 | |a Fundamentals of the physical theory of diffraction |c Pyotr Ya. Ufimtsev |
264 | 1 | |a Hoboken, NJ |b Wiley |c 2007 | |
300 | |a XVII, 329 S. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
500 | |a Includes bibliographical references and index | ||
650 | 4 | |a Electromagnetic waves |x Diffraction | |
650 | 4 | |a Diffractive scattering | |
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Datensatz im Suchindex
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adam_text | FUNDAMENTALS OF THE PHYSICAL THEORY OF DIFFRACTION PYOTR YA. UFIMTSEV
BICCNTENNIAL F*** 1! 1807;! S JWILEY » 2 0 0 7 ; AI IR BICENTENNIAL
WILEY-INTERSCIENCE A JOHN WILEY & SONS, INC., PUBLICATION CONTENTS
FOREWORD PREFACE ACKNOWLEDGMENTS XI XV XVII INTRODUCTION 1. BASIC
NOTIONS IN ACOUSTIC AND ELECTROMAGNETIC DIFFRACTION PROBLEMS 5 1.1
FORMULATION OF THE DIFFRACTION PROBLEM 5 1.2 SCATTERED FIELD IN THE FAR
ZONE 7 1.3 PHYSICAL OPTICS 11 1.3.1 DEFINITION OF THE PHYSICAL OPTICS 11
1.3.2 TOTAL SCATTERING CROSS-SECTION 13 1.3.3 OPTICAL THEOREM 15 1.3.4
INTRODUCING THE NOTION OF SHADOW RADIATION 16 1.3.5 SHADOW CONTOUR
THEOREM AND THETOTAL SCATTERING CROSS-SECTION 21 1.3.6 SUMMARY OF
PROPERTIES OF PHYSICAL OPTICS APPROXIMATION 24 1.4 NONUNIFORM COMPONENT
OF INDUCED SURFACE FIELD 25 1.5 ELECTROMAGNETIC WAVES 27 PROBLEMS 31 2.
WEDGE DIFFRACTION: EXACT SOLUTION AND ASYMPTOTICS 3 3 2.1 CLASSICAL
SOLUTIONS 33 2.2 TRANSITION TO THE PLANE WAVE EXCITATION 38 2.3
CONVERSION OF THE SERIES SOLUTION TO THE SOMMERFELD INTEGRALS 40 2.4 THE
SOMMERFELD RAY ASYMPTOTICS 44 2.5 THE PAULI ASYMPTOTICS 47 2.6 UNIFORM
ASYMPTOTICS: EXTENSION OF THE PAULI TECHNIQUE 51 2.7 COMMENTS ON
ALTERNATIVE ASYMPTOTICS 55 PROBLEMS 56 V VI CONTENTS 3. WEDGE
DIFFRACTION: THE PHYSICAL OPTICS FIELD 59 3.1 ORIGINAL PO INTEGRALS 59
3.2 CONVERSION OF THE PO INTEGRALS TO THE CANONICAL FORM 61 3.3 RAY
ASYMPTOTICS FOR THE PO DIFFRACTED FIELD 67 PROBLEMS 68 4. WEDGE
DIFFRACTION: RADIATION BY THE NONUNIFORM COMPONENT OF SURFACE SOURCES 71
4.1 INTEGRALS AND ASYMPTOTICS 71 4.2 INTEGRAL FORM OF FUNCTIONS/ ^ AND
G^ 76 4.3 OBLIQUE INCIDENCE OF A PLANE WAVE AT A WEDGE 78 PROBLEMS 82
5. FIRST-ORDER DIFFRACTION AT STRIPS AND POLYGONAL CYLINDERS 83 5.1
DIFFRACTION AT A STRIP 83 5.1.1 PHYSICAL OPTICS PART OF THE SCATTERED
FIELD 85 5.1.2 TOTAL SCATTERED FIELD 87 5.1.3 NUMERICAL ANALYSIS OF THE
SCATTERED FIELD 92 5.1.4 FIRST-ORDER PTD WITH TRUNCATED SCATTERING
SOURCES /^ 95 5.2 DIFFRACTION AT A TRIANGULAER CYLINDER 99 5.2.1
SYMMETRIE SCATTERING: PO APPROXIMATION 101 5.2.2 BACKSCATTERING: PO
APPROXIMATION 102 5.2.3 SYMMETRIE SCATTERING: FIRST-ORDER PTD
APPROXIMATION 104 5.2.4 BACKSCATTERING: FIRST-ORDER PTD APPROXIMATION
107 5.2.5 NUMERICAL ANALYSIS OF THE SCATTERED FIELD 110 PROBLEMS 112 6.
AXIALLY SYMMETRIE SCATTERING OF ACOUSTIC WAVES AT BODIES OF REVOLUTION
115 6.1 DIFFRACTION AT A CANONICAL CONIC SURFACE 115 6.1.1 INTEGRALS FOR
THE SCATTERED FIELD 117 6.1.2 RAY ASYMPTOTICS 118 6.1.3 FOCALFIELDS 124
6.1.4 BESSEL INTERPOLATIONS FOR THE FIELD U* . 125 6.2 SCATTERING AT A
DISK 126 6.2.1 PHYSICAL OPTICS APPROXIMATION 127 6.2.2 FIELD GENERATED
BY NONUNIFORM SCATTERING SOURCES 130 6.2.3 TOTAL SCATTERED FIELD 132
CONTENTS VUE 6.3 SCATTERING AT CONES: FOCAL FIELD 134 6.3.1 ASYMPTOTIC
APPROXIMATIONS FOR THE FIELD 134 6.3.2 NUMERICAL ANALYSIS OF
BACKSCATTERING 138 6.4 BODIES OF REVOLUTION WITH NONZERO GAUSSIAN
CURVATURE: BACKSCATTERED FOCAL FIELDS 141 6.4.1 PO APPROXIMATION 143
6.4.2 TOTAL BACKSCATTERED FOCAL FIELD: FIRST-ORDER PTD ASYMPTOTICS 145
6.4.3 BACKSCATTERING FROM PARABOLOIDS 145 6.4.4 BACKSCATTERING FROM
SPHERICAL SEGMENTS 151 6.5 BODIES OF REVOLUTION WITH NONZERO GAUSSIAN
CURVATURE: AXIALLY SYMMETRIE BISTATIC SCATTERING 155 6.5.1 RAY
ASYMPTOTICS FOR THE PO FIELD 156 6.5.2 BESSEL INTERPOLATIONS FOR THE PO
FIELD IN THE REGION N * A $ N 15 9 6.5.3 BESSEL INTERPOLATIONS FOR
THE PTD FIELD IN THE REGION N * CO )? TZ 160 6.5.4 ASYMPTOTICS FOR
THE PTD FIELD IN THE REGION 2UE) # TZ * CO AWAY FROM THE GO BOUNDARY
& = 2CO 161 6.5.5 UNIFORM APPROXIMATIONS FOR THE PO FIELD IN THE RAY
REGION 2CO TR TZ * CO INCLUDING THE GO BOUNDARY ?? = 2A 161 6.5.6
APPROXIMATION FOR THE PO FIELD IN THE SHADOW REGION FOR REFLECTED RAYS
165 PROBLEMS 166 7. ELEMENTARY ACOUSTIC AND ELECTROMAGNETIC EDGE WAVES
169 7.1 ELEMENTARY STRIPS ON A CANONICAL WEDGE 170 7.2 INTEGRALS FOR/; H
ON ELEMENTARY STRIPS 171 7.3 TRIPLE INTEGRALS FOR ELEMENTARY EDGE WAVES
175 7.4 TRANSFORMATION OF TRIPLE INTEGRALS INTO ONE-DIMENSIONAL
INTEGRALS 178 7.5 GENERAL ASYMPTOTICS FOR ELEMENTARY EDGE WAVES 183 7.6
ANALYTIC PROPERTIES OF ELEMENTARY EDGE WAVES 187 7.7 NUMERICAL
CALCULATIONS OF ELEMENTARY EDGE WAVES 191 7.8 ELECTROMAGNETIC ELEMENTARY
EDGE WAVES 194 7.9 IMPROVED THEORY OF ELEMENTARY EDGE WAVES 198 7.9.1
ACOUSTIC EEWS 199 7.9.2 ELECTROMAGNETIC EEWS 203 7.10 SOME REFERENCES
RELATED TO ELEMENTARY EDGE WAVES 209 PROBLEMS 210 VUEI CONTENTS 8. RAY
AND CAUSTICS ASYMPTOTICS FOR EDGE DIFFRACTED WAVES 213 8.1 RAY
ASYMPTOTICS 213 8.1.1 ACOUSTIC WAVES 213 8.1.2 ELECTROMAGNETIC WAVES 218
8.1.3 COMMENTS ON RAY ASYMPTOTICS 219 8.2 CAUSTIC ASYMPTOTICS 220 8.2.1
ACOUSTIC WAVES 221 8.2.2 ELECTROMAGNETIC WAVES 225 PROBLEMS 226 9.
MULTIPLE DIFFRACTION OF EDGE WAVES: GRAZING INCIDENCE AND SLOPE
DIFFRACTION 229 9.1 STATEMENT OF THE PROBLEM AND RELATED REFERENCES 229
9.2 GRAZING DIFFRACTION 230 9.2.1 ACOUSTIC WAVES 230 9.2.2
ELECTROMAGNETIC WAVES 234 9.3 SLOPE DIFFRACTION IN THE CONFIGURATION OF
FIGURE 9.1 236 9.3.1 ACOUSTIC WAVES 236 9.3.2 ELECTROMAGNETIC WAVES 238
9.4 SLOPE DIFFRACTION: GENERAL CASE 240 9.4.1 ACOUSTIC WAVES 240 9.4.2
ELECTROMAGNETIC WAVES 243 PROBLEMS 245 10. DIFFRACTION INTERACTION OF
NEIGHBORING EDGES ON A RULED SURFACE 247 10.1 DIFFRACTION AT AN
ACOUSTICALLY HARD SURFACE 248 10.2 DIFFRACTION AT AN ACOUSTICALLY SOFT
SURFACE 250 10.3 DIFFRACTION OF ELECTROMAGNETIC WAVES 252 PROBLEMS 254
11. FOCUSING OF MULTIPLE ACOUSTIC EDGE WAVES DIFFRACTED AT A CONVEX BODY
OF REVOLUTION WITH A FIAT BASE 255 11.1 STATEMENT OF THE PROBLEM AND ITS
CHARACTERISTIC FEATURES 255 11.2 MULTIPLE HARD DIFFRACTION 256 11.3
MULTIPLE SOFT DIFFRACTION 258 PROBLEMS 260 CONTENTS IX 12. FOCUSING OF
MULTIPLE EDGE WAVES DIFFRACTED AT A DISK 261 12.1 MULTIPLE HARD
DIFFRACTION 261 12.2 MULTIPLE SOFT DIFFRACTION 264 12.3 MULTIPLE
DIFFRACTION OF ELECTROMAGNETIC WAVES 267 PROBLEMS 268 13. BACKSCATTERING
AT A FINITE-LENGTH CYLINDER 269 13.1 ACOUSTIC WAVES 269 13.1.1 PO
APPROXIMATION 269 13.1.2 BACKSCATTERING PRODUCED BY THE NONUNIFORM
COMPONENTJ* 273 13.1.3 TOTAL BACKSCATTERED FIELD 277 13.2
ELECTROMAGNETIC WAVES 279 13.2.1 E-POLARIZATION 279 13.2.2
H-POLARIZATION 283 PROBLEMS 285 14. BISTATIC SCATTERING AT A
FINITE-LENGTH CYLINDER 287 14.1 ACOUSTIC WAVES 287 14.1.1 PO
APPROXIMATION 287 14.1.2 SHADOW RADIATION AS A PART OF THE PHYSICAL
OPTICS FIELD 289 14.1.3 PTD FOR BISTATIC SCATTERING AT A HARD CYLINDER
290 14.1.4 BEAMS AND RAYS OF THE SCATTERED FIELD 297 14.1.5 REFINED
ASYMPTOTICS FOR THE SPECULAR BEAM 300 14.2 ELECTROMAGNETIC WAVES 304
14.2.1 -POLARIZATION 304 14.2.2 FL-POLARIZATION 306 14.2.3 REFINED
ASYMPTOTICS FOR THE SPECULAR BEAM REFIECTED FROM THE LATERAL SURFACE 308
PROBLEMS 311 CONCLUSION 313 REFERENCES 315 INDEX 323
|
adam_txt |
FUNDAMENTALS OF THE PHYSICAL THEORY OF DIFFRACTION PYOTR YA. UFIMTSEV
BICCNTENNIAL F*** 1! 1807;! S JWILEY \ » 2 0 0 7 ; AI IR BICENTENNIAL
WILEY-INTERSCIENCE A JOHN WILEY & SONS, INC., PUBLICATION CONTENTS
FOREWORD PREFACE ACKNOWLEDGMENTS XI XV XVII INTRODUCTION 1. BASIC
NOTIONS IN ACOUSTIC AND ELECTROMAGNETIC DIFFRACTION PROBLEMS 5 1.1
FORMULATION OF THE DIFFRACTION PROBLEM 5 1.2 SCATTERED FIELD IN THE FAR
ZONE 7 1.3 PHYSICAL OPTICS 11 1.3.1 DEFINITION OF THE PHYSICAL OPTICS 11
1.3.2 TOTAL SCATTERING CROSS-SECTION 13 1.3.3 OPTICAL THEOREM 15 1.3.4
INTRODUCING THE NOTION OF "SHADOW RADIATION" 16 1.3.5 SHADOW CONTOUR
THEOREM AND THETOTAL SCATTERING CROSS-SECTION 21 1.3.6 SUMMARY OF
PROPERTIES OF PHYSICAL OPTICS APPROXIMATION 24 1.4 NONUNIFORM COMPONENT
OF INDUCED SURFACE FIELD 25 1.5 ELECTROMAGNETIC WAVES 27 PROBLEMS 31 2.
WEDGE DIFFRACTION: EXACT SOLUTION AND ASYMPTOTICS 3 3 2.1 CLASSICAL
SOLUTIONS 33 2.2 TRANSITION TO THE PLANE WAVE EXCITATION 38 2.3
CONVERSION OF THE SERIES SOLUTION TO THE SOMMERFELD INTEGRALS 40 2.4 THE
SOMMERFELD RAY ASYMPTOTICS 44 2.5 THE PAULI ASYMPTOTICS 47 2.6 UNIFORM
ASYMPTOTICS: EXTENSION OF THE PAULI TECHNIQUE 51 2.7 COMMENTS ON
ALTERNATIVE ASYMPTOTICS 55 PROBLEMS 56 V VI CONTENTS 3. WEDGE
DIFFRACTION: THE PHYSICAL OPTICS FIELD 59 3.1 ORIGINAL PO INTEGRALS 59
3.2 CONVERSION OF THE PO INTEGRALS TO THE CANONICAL FORM 61 3.3 RAY
ASYMPTOTICS FOR THE PO DIFFRACTED FIELD 67 PROBLEMS 68 4. WEDGE
DIFFRACTION: RADIATION BY THE NONUNIFORM COMPONENT OF SURFACE SOURCES 71
4.1 INTEGRALS AND ASYMPTOTICS 71 4.2 INTEGRAL FORM OF FUNCTIONS/ ^ AND
G^' 76 4.3 OBLIQUE INCIDENCE OF A PLANE WAVE AT A WEDGE 78 PROBLEMS 82
5. FIRST-ORDER DIFFRACTION AT STRIPS AND POLYGONAL CYLINDERS 83 5.1
DIFFRACTION AT A STRIP 83 5.1.1 PHYSICAL OPTICS PART OF THE SCATTERED
FIELD 85 5.1.2 TOTAL SCATTERED FIELD 87 5.1.3 NUMERICAL ANALYSIS OF THE
SCATTERED FIELD 92 5.1.4 FIRST-ORDER PTD WITH TRUNCATED SCATTERING
SOURCES /^ 95 5.2 DIFFRACTION AT A TRIANGULAER CYLINDER 99 5.2.1
SYMMETRIE SCATTERING: PO APPROXIMATION 101 5.2.2 BACKSCATTERING: PO
APPROXIMATION 102 5.2.3 SYMMETRIE SCATTERING: FIRST-ORDER PTD
APPROXIMATION 104 5.2.4 BACKSCATTERING: FIRST-ORDER PTD APPROXIMATION
107 5.2.5 NUMERICAL ANALYSIS OF THE SCATTERED FIELD 110 PROBLEMS 112 6.
AXIALLY SYMMETRIE SCATTERING OF ACOUSTIC WAVES AT BODIES OF REVOLUTION
115 6.1 DIFFRACTION AT A CANONICAL CONIC SURFACE 115 6.1.1 INTEGRALS FOR
THE SCATTERED FIELD 117 6.1.2 RAY ASYMPTOTICS 118 6.1.3 FOCALFIELDS 124
6.1.4 BESSEL INTERPOLATIONS FOR THE FIELD U* . 125 6.2 SCATTERING AT A
DISK 126 6.2.1 PHYSICAL OPTICS APPROXIMATION 127 6.2.2 FIELD GENERATED
BY NONUNIFORM SCATTERING SOURCES 130 6.2.3 TOTAL SCATTERED FIELD 132
CONTENTS VUE 6.3 SCATTERING AT CONES: FOCAL FIELD 134 6.3.1 ASYMPTOTIC
APPROXIMATIONS FOR THE FIELD 134 6.3.2 NUMERICAL ANALYSIS OF
BACKSCATTERING 138 6.4 BODIES OF REVOLUTION WITH NONZERO GAUSSIAN
CURVATURE: BACKSCATTERED FOCAL FIELDS 141 6.4.1 PO APPROXIMATION 143
6.4.2 TOTAL BACKSCATTERED FOCAL FIELD: FIRST-ORDER PTD ASYMPTOTICS 145
6.4.3 BACKSCATTERING FROM PARABOLOIDS 145 6.4.4 BACKSCATTERING FROM
SPHERICAL SEGMENTS 151 6.5 BODIES OF REVOLUTION WITH NONZERO GAUSSIAN
CURVATURE: AXIALLY SYMMETRIE BISTATIC SCATTERING 155 6.5.1 RAY
ASYMPTOTICS FOR THE PO FIELD 156 6.5.2 BESSEL INTERPOLATIONS FOR THE PO
FIELD IN THE REGION N * A $ N 15 9 6.5.3 BESSEL INTERPOLATIONS FOR
THE PTD FIELD IN THE REGION N * CO )? TZ 160 6.5.4 ASYMPTOTICS FOR
THE PTD FIELD IN THE REGION 2UE) # TZ * CO AWAY FROM THE GO BOUNDARY
& = 2CO 161 6.5.5 UNIFORM APPROXIMATIONS FOR THE PO FIELD IN THE RAY
REGION 2CO TR TZ * CO INCLUDING THE GO BOUNDARY ?? = 2A 161 6.5.6
APPROXIMATION FOR THE PO FIELD IN THE SHADOW REGION FOR REFLECTED RAYS
165 PROBLEMS 166 7. ELEMENTARY ACOUSTIC AND ELECTROMAGNETIC EDGE WAVES
169 7.1 ELEMENTARY STRIPS ON A CANONICAL WEDGE 170 7.2 INTEGRALS FOR/; H
ON ELEMENTARY STRIPS 171 7.3 TRIPLE INTEGRALS FOR ELEMENTARY EDGE WAVES
175 7.4 TRANSFORMATION OF TRIPLE INTEGRALS INTO ONE-DIMENSIONAL
INTEGRALS 178 7.5 GENERAL ASYMPTOTICS FOR ELEMENTARY EDGE WAVES 183 7.6
ANALYTIC PROPERTIES OF ELEMENTARY EDGE WAVES 187 7.7 NUMERICAL
CALCULATIONS OF ELEMENTARY EDGE WAVES 191 7.8 ELECTROMAGNETIC ELEMENTARY
EDGE WAVES 194 7.9 IMPROVED THEORY OF ELEMENTARY EDGE WAVES 198 7.9.1
ACOUSTIC EEWS 199 7.9.2 ELECTROMAGNETIC EEWS 203 7.10 SOME REFERENCES
RELATED TO ELEMENTARY EDGE WAVES 209 PROBLEMS 210 VUEI CONTENTS 8. RAY
AND CAUSTICS ASYMPTOTICS FOR EDGE DIFFRACTED WAVES 213 8.1 RAY
ASYMPTOTICS 213 8.1.1 ACOUSTIC WAVES 213 8.1.2 ELECTROMAGNETIC WAVES 218
8.1.3 COMMENTS ON RAY ASYMPTOTICS 219 8.2 CAUSTIC ASYMPTOTICS 220 8.2.1
ACOUSTIC WAVES 221 8.2.2 ELECTROMAGNETIC WAVES 225 PROBLEMS 226 9.
MULTIPLE DIFFRACTION OF EDGE WAVES: GRAZING INCIDENCE AND SLOPE
DIFFRACTION 229 9.1 STATEMENT OF THE PROBLEM AND RELATED REFERENCES 229
9.2 GRAZING DIFFRACTION 230 9.2.1 ACOUSTIC WAVES 230 9.2.2
ELECTROMAGNETIC WAVES 234 9.3 SLOPE DIFFRACTION IN THE CONFIGURATION OF
FIGURE 9.1 236 9.3.1 ACOUSTIC WAVES 236 9.3.2 ELECTROMAGNETIC WAVES 238
9.4 SLOPE DIFFRACTION: GENERAL CASE 240 9.4.1 ACOUSTIC WAVES 240 9.4.2
ELECTROMAGNETIC WAVES 243 PROBLEMS 245 10. DIFFRACTION INTERACTION OF
NEIGHBORING EDGES ON A RULED SURFACE 247 10.1 DIFFRACTION AT AN
ACOUSTICALLY HARD SURFACE 248 10.2 DIFFRACTION AT AN ACOUSTICALLY SOFT
SURFACE 250 10.3 DIFFRACTION OF ELECTROMAGNETIC WAVES 252 PROBLEMS 254
11. FOCUSING OF MULTIPLE ACOUSTIC EDGE WAVES DIFFRACTED AT A CONVEX BODY
OF REVOLUTION WITH A FIAT BASE 255 11.1 STATEMENT OF THE PROBLEM AND ITS
CHARACTERISTIC FEATURES 255 11.2 MULTIPLE HARD DIFFRACTION 256 11.3
MULTIPLE SOFT DIFFRACTION 258 PROBLEMS 260 CONTENTS IX 12. FOCUSING OF
MULTIPLE EDGE WAVES DIFFRACTED AT A DISK 261 12.1 MULTIPLE HARD
DIFFRACTION 261 12.2 MULTIPLE SOFT DIFFRACTION 264 12.3 MULTIPLE
DIFFRACTION OF ELECTROMAGNETIC WAVES 267 PROBLEMS 268 13. BACKSCATTERING
AT A FINITE-LENGTH CYLINDER 269 13.1 ACOUSTIC WAVES 269 13.1.1 PO
APPROXIMATION 269 13.1.2 BACKSCATTERING PRODUCED BY THE NONUNIFORM
COMPONENTJ* ' 273 13.1.3 TOTAL BACKSCATTERED FIELD 277 13.2
ELECTROMAGNETIC WAVES 279 13.2.1 E-POLARIZATION 279 13.2.2
H-POLARIZATION 283 PROBLEMS 285 14. BISTATIC SCATTERING AT A
FINITE-LENGTH CYLINDER 287 14.1 ACOUSTIC WAVES 287 14.1.1 PO
APPROXIMATION 287 14.1.2 SHADOW RADIATION AS A PART OF THE PHYSICAL
OPTICS FIELD 289 14.1.3 PTD FOR BISTATIC SCATTERING AT A HARD CYLINDER
290 14.1.4 BEAMS AND RAYS OF THE SCATTERED FIELD 297 14.1.5 REFINED
ASYMPTOTICS FOR THE SPECULAR BEAM 300 14.2 ELECTROMAGNETIC WAVES 304
14.2.1 -POLARIZATION 304 14.2.2 FL-POLARIZATION 306 14.2.3 REFINED
ASYMPTOTICS FOR THE SPECULAR BEAM REFIECTED FROM THE LATERAL SURFACE 308
PROBLEMS 311 CONCLUSION 313 REFERENCES 315 INDEX 323 |
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author | Ufimcev, Petr Ja |
author_GND | (DE-588)138659761 |
author_facet | Ufimcev, Petr Ja |
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author_sort | Ufimcev, Petr Ja |
author_variant | p j u pj pju |
building | Verbundindex |
bvnumber | BV022264741 |
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ctrlnum | (OCoLC)71266572 (DE-599)BVBBV022264741 |
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dewey-ones | 621 - Applied physics |
dewey-raw | 621.382/4 |
dewey-search | 621.382/4 |
dewey-sort | 3621.382 14 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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id | DE-604.BV022264741 |
illustrated | Not Illustrated |
index_date | 2024-07-02T16:43:56Z |
indexdate | 2024-07-09T20:53:40Z |
institution | BVB |
isbn | 047009771X 9780470097717 |
language | English |
lccn | 2006049684 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-015475328 |
oclc_num | 71266572 |
open_access_boolean | |
owner | DE-703 DE-91 DE-BY-TUM DE-83 |
owner_facet | DE-703 DE-91 DE-BY-TUM DE-83 |
physical | XVII, 329 S. |
publishDate | 2007 |
publishDateSearch | 2007 |
publishDateSort | 2007 |
publisher | Wiley |
record_format | marc |
spelling | Ufimcev, Petr Ja. Verfasser (DE-588)138659761 aut Fundamentals of the physical theory of diffraction Pyotr Ya. Ufimtsev Hoboken, NJ Wiley 2007 XVII, 329 S. txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references and index Electromagnetic waves Diffraction Diffractive scattering Beugung (DE-588)4145094-2 gnd rswk-swf Beugung (DE-588)4145094-2 s DE-604 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015475328&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Ufimcev, Petr Ja Fundamentals of the physical theory of diffraction Electromagnetic waves Diffraction Diffractive scattering Beugung (DE-588)4145094-2 gnd |
subject_GND | (DE-588)4145094-2 |
title | Fundamentals of the physical theory of diffraction |
title_auth | Fundamentals of the physical theory of diffraction |
title_exact_search | Fundamentals of the physical theory of diffraction |
title_exact_search_txtP | Fundamentals of the physical theory of diffraction |
title_full | Fundamentals of the physical theory of diffraction Pyotr Ya. Ufimtsev |
title_fullStr | Fundamentals of the physical theory of diffraction Pyotr Ya. Ufimtsev |
title_full_unstemmed | Fundamentals of the physical theory of diffraction Pyotr Ya. Ufimtsev |
title_short | Fundamentals of the physical theory of diffraction |
title_sort | fundamentals of the physical theory of diffraction |
topic | Electromagnetic waves Diffraction Diffractive scattering Beugung (DE-588)4145094-2 gnd |
topic_facet | Electromagnetic waves Diffraction Diffractive scattering Beugung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015475328&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT ufimcevpetrja fundamentalsofthephysicaltheoryofdiffraction |