Modern optical engineering the design of optical systems

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Bibliographische Detailangaben
1. Verfasser: Smith, Warren J. (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: New York u.a. McGraw-Hill 1990
Ausgabe:2. ed.
Schriftenreihe:Optical and electro-optical engineering series
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Datensatz im Suchindex

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adam_text MODERN OPTICAL ENGINEERING THE DESIGN OF OPTICAL SYSTEMS WARREN J. SMITH CHIEF SCIENTIST KAISER ELECTRO-OPTICS INC. CARLSBAD, CALIFORNIA SECOND EDITION MCGRAW-HILL, INC. NEW YORK ST. LOUIS SAN FRANCISCO AUCKLAND BOGOTA CARACAS HAMBURG LISBON LONDON MADRID MEXICO MILAN MONTREAL NEW DELHI PARIS SAN JUAN SAO PAULO SINGAPORE SYDNEY TOKYO TORONTO CONTENTS PREFACE XI CHAPTER 1. GENERAL PRINCIPLES 1 1.1 THE ELECTROMAGNETIC SPECTRUM 1 1.2 LIGHT WAVE PROPAGATION 3 1.3 SNELL S LAW OF REFRACTION 4 1.4 THE ACTION OF SIMPLE LENSES AND PRISMS ON WAVE FRONTS 8 1.5 INTERFERENCE AND DIFFRACTION 11 1.6 THE PHOTOELECTRIC EFFECT 16 CHAPTER 2. IMAGE FORMATION (FIRST-ORDER OPTICS) 19 2.1 19 2.2 CARDINAL POINTS OF AN OPTICAL SYSTEM 20 2.3 IMAGE POSITION AND SIZE 22 2.4 REFRACTION OF A LIGHT RAY AT A SINGLE SURFACE 28 2.5 THE PARAXIAL REGION 30 2.6 PARAXIAL RAYTRACING THROUGH SEVERAL SURFACES 31 2.7 FOCAL POINTS AND PRINCIPAL POINTS OF A SINGLE LENS ELEMENT 36 2.8 THE THIN LENS 39 2.9 MIRRORS 41 2.10 SYSTEMS OF SEPARATED COMPONENTS 43 2.11 THE OPTICAL INVARIANT 47 2.12 MATRIX OPTICS 51 2.13 THE Y-YBAR DIAGRAM 52 2.14 THE SCHEIMPFLUG CONDITION 52 2.15 SUMMARY OF SIGN CONVENTIONS 52 CHAPTER 3. ABERRATIONS 57 3.1 57 3.2 THE ABERRATION POLYNOMIAL AND THE SEIDEI ABERRATIONS 58 VII VIII CONTENTS 3.3 CHROMATIC ABERRATIONS 68 3.4 THE EFFECT OF LENS SHAPE AND STOP POSITION ON THE ABERRATIONS 70 3.5 ABERRATION VARIATION WITH APERTURE AND FIELD 74 3.6 OPTICAL PATH DIFFERENCE 75 3.7 ABERRATION CORRECTION AND RESIDUALS 76 3.8 RAY INTERCEPT CURVES AND THE ORDERS OF ABERRATIONS 79 CHAPTER 4. PRISMS AND MIRRORS 87 4.1 87 4.2 DISPERSING PRISMS 87 4.3 THE THIN PRISM 89 4.4 MINIMUM DEVIATION 90 4.5 THE ACHROMATIC PRISM AND THE DIRECT VISION PRISM 90 4.6 TOTAL INTERNAL REFLECTION 92 4.7 REFLECTION FROM A PLANE SURFACE 93 4.8 PLANE PARALLEL PLATES 96 4.9 THE RIGHT ANGLE PRISM 100 4.10 THE ROOF PRISM 103 4.11 ERECTING PRISM SYSTEMS 104 4.12 INVERSION PRISMS 107 4.13 THE PENTA PRISM 108 4.14 RHOMBOIDS AND BEAM SPLITTERS 110 4.15 PLANE MIRRORS 112 4.16 THE DESIGN OF PRISM AND REFLECTOR SYSTEMS 113 4.17 ANALYSIS OF FABRICATION ERRORS 117 CHAPTER 5. THE EYE 119 5.1 119 5.2 THE STRUCTURE OF THE EYE 120 5.3 CHARACTERISTICS OF THE EYE 122 5.4 DEFECTS OF THE EYE 129 CHAPTER 6. STOPS AND APERTURES 133 6.1 133 6.2 THE APERTURE STOP 134 6.3 THE FIELD STOP 135 6.4 VIGNETTING 135 6.5 GLARE STOPS AND BAFFLES 139 6.6 THE TELECENTRIC STOP 142 6.7 APERTURES AND IMAGE ILLUMINATION * F-STOPS AND COSINE-FOURTH 142 6.8 DEPTH OF FOCUS 145 6.9 DIFFRACTION EFFECTS OF APERTURES 148 6.10 RESOLUTION OF OPTICAL SYSTEMS 151 6.11 DIFFRACTION OF A GAUSSIAN (LASER) BEAM 155 CONTENTS CHAPTER 7. OPTICAL MATERIALS AND INTERFERENCE COATINGS 161 7.1 REFLECTION, ABSORPTION, DISPERSION 161 7.2 OPTICAL GLASS N 166 7.3 SPECIAL GLASSES 172 7.4 CRYSTALLINE MATERIALS 175 7.5 PLASTIC OPTICAL MATERIALS 177 7.6 ABSORPTION FILTERS 179 7.7 DIFFUSING MATERIALS AND PROJECTION SCREENS 181 7.8 POLARIZING MATERIALS 185 7.9 DIELECTRIC REFLECTION AND INTERFERENCE FILTERS 187 7.10 REFLECTORS 196 7.11 RETICLES 197 7.12 CEMENTS AND LIQUIDS 200 CHAPTER 8. RADIOMETRY AND PHOTOMETRY 205 8.1 205 8.2 THE INVERSE SQUARE LAW; INTENSITY 205 8.3 RADIANCE AND LAMBERT S LAW 206 8.4 RADIATION INTO A HEMISPHERE 208 8.5 IRRADIANCE PRODUCED BY A DIFFUSE SOURCE 209 8.6 THE RADIOMETRY OF IMAGES 211 8.7 SPECTRAL RADIOMETRY 215 8.8 BLACK BODY RADIATION 217 8.9 PHOTOMETRY 222 8.10 ILLUMINATION DEVICES 227 CHAPTER 9. BASIC OPTICAL DEVICES 235 9.1 TELESCOPES, AFOCAL SYSTEMS 235 9.2 FIELD LENSES AND RELAY SYSTEMS - 239 9.3 EXIT PUPILS, THE EYE AND RESOLUTION 241 9.4 THE SIMPLE MICROSCOPE 251 9.5 THE COMPOUND MICROSCOPE 252 9.6 RANGEFINDERS 254 9.7 RADIOMETER AND DETECTOR OPTICS 258 9.8 FIBER OPTICS 265 9.9 ANAMORPHIC SYSTEMS 270 9.10 VARIABLE POWER (ZOOM) SYSTEMS 273 CHAPTER 10. OPTICAL COMPUTATION 281 10.1 281 10.2 PARAXIAL RAYS 282 10.3 MERIDIONAL RAYS 283 10.4 GENERAL, OR SKEW, RAYS: SPHERICAL SURFACES 288 10.5 GENERAL, OR SKEW, RAYS: ASPHERIC SURFACES 292 0 X CONTENTS 10.6 CODDINGTON S EQUATIONS 297 10.7 ABERRATION DETERMINATION 302 10.8 THIRD-ORDER ABERRATIONS: SURFACE CONTRIBUTIONS 307 10.9 THIRD-ORDER ABERRATIONS: THIN LENSES; STOP SHIFT EQUATIONS 315 CHAPTER 11. IMAGE EVALUATION 327 11.1 327 11.2 OPTICAL PATH DIFFERENCE: FOCUS SHIFT 327 11.3 OPTICAL PATH DIFFERENCE: SPHERICAL ABERRATION 329 11.4 ABERRATION TOLERANCES . 335 11.5 IMAGE ENERGY DISTRIBUTION (GEOMETRICAL) 340 11.6 SPREAD FUNCTIONS 341 11.7 GEOMETRICAL SPOT SIZES DUE TO SPHERICAL ABERRATION 342 11.8 THE MODULATION TRANSFER FUNCTION 345 11.9 COMPUTATION OF THE MODULATION TRANSFER FUNCTION 352 11.10 SPECIAL MODULATION TRANSFER FUNCTIONS: DIFFRACTION-LIMITED SYSTEMS 356 11.11 RADIAL ENERGY DISTRIBUTION 361 CHAPTER 12. THE DESIGN OF OPTICAL SYSTEMS: GENERAL 365 12.1 365 12.2 THE SIMPLE MENISCUS CAMERA LENS 367 12.3 THE SYMMETRICAL PRINCIPLE 372 12.4 ACHROMATIC OBJECTIVES (THIN LENS THEORY) 372 12.5 ACHROMATIC OBJECTIVES (DESIGN FORMS) 375 12.6 THE COOKE TRIPLET AHASTIGMAT 384 12.7 A GENERALIZED DESIGN TECHNIQUE 390 12.8 AUTOMATIC DESIGN BY ELECTRONIC COMPUTER 397 CHAPTER 13. THE DESIGN OF OPTICAL SYSTEMS: PARTICULAR 403 13.1 TELESCOPE SYSTEMS 403 13.2 MICROSCOPE OBJECTIVES 410 13.3 PHOTOGRAPHIC OBJECTIVES 416 13.4 CONDENSER SYSTEMS 432 13.5 REFLECTING SYSTEMS 436 13.6 THE RAPID ESTIMATION OF BLUR SIZES FOR SIMPLE OPTICAL SYSTEMS 452 CHAPTER 14. OPTICS IN PRACTICE 463 14.1 OPTICAL MANUFACTURE 463 14.2 OPTICAL SPECIFICATIONS ARID TOLERANCES 472 14.3 OPTICAL MOUNTING TECHNIQUES 489 14.4 OPTICAL LABORATORY PRACTICE 494 INDEX 515
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series2 Optical and electro-optical engineering series
spellingShingle Smith, Warren J.
Modern optical engineering the design of optical systems
Optique - Instruments - Construction ram
Optical instruments Design and construction
Optisches Instrument (DE-588)4140457-9 gnd
Technische Optik (DE-588)4078181-1 gnd
Entwurf (DE-588)4121208-3 gnd
subject_GND (DE-588)4140457-9
(DE-588)4078181-1
(DE-588)4121208-3
title Modern optical engineering the design of optical systems
title_auth Modern optical engineering the design of optical systems
title_exact_search Modern optical engineering the design of optical systems
title_full Modern optical engineering the design of optical systems Warren J. Smith
title_fullStr Modern optical engineering the design of optical systems Warren J. Smith
title_full_unstemmed Modern optical engineering the design of optical systems Warren J. Smith
title_short Modern optical engineering
title_sort modern optical engineering the design of optical systems
title_sub the design of optical systems
topic Optique - Instruments - Construction ram
Optical instruments Design and construction
Optisches Instrument (DE-588)4140457-9 gnd
Technische Optik (DE-588)4078181-1 gnd
Entwurf (DE-588)4121208-3 gnd
topic_facet Optique - Instruments - Construction
Optical instruments Design and construction
Optisches Instrument
Technische Optik
Entwurf
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