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[书籍类资料] Reflective Optics, Dietrich Korsch (英文)

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    慵懒
    2023-10-2 07:54
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    [LV.10]以坛为家III

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    发表于 2020-10-29 09:58 | 显示全部楼层 |阅读模式
    看到论坛有人找这本书,之前链接可能无效了。
    版主如果发现违规,可以删除,谢谢!


    Reflective Optics
    Dietrich Korsch
    Huntsville, Alabama
    ACADEMIC PRESS, INC.
    Harcourt Brace Jovanovich, Publishers
    Boston San Diego New York
    London Sydney Tokyo Toronto
    Contents
    Preface xiii
    Chapter One Coordinates and Sign
    Convention 1
    1.1 Coordinates and Coordinate Systems 1
    1.2 The Signs of Trigonometric Functions 3
    Chapter Two The Law of Reflection and
    the Formation of a Point
    Image 7
    2.1 Fermat's Principle 7
    2.2 The Law of Reflection 8
    2.3 The Reflected-Ray Equation 11
    2.4 The Cartesian Surface 15
    2.5 Conic Sections of Revolution 18
    2.6 Aspheric and Aparabolic Deformation Constants 23
    2.7 Conic Sections in Optics and in Geometry 24
    2.8 The Apo-Vertex Equation 27
    2.9 Grazing Incidence 32
    Chapter Three First-Order Optics 35
    3.1 The Paraxial Ray Equation 36
    3.2 The Pupil 37
    3.3 Paraxial Relations and Definitions 38
    3.4 The Compound System 43
    3.5 First-Order Relations for Compound Systems 44
    Vll
    viii CONTENTS
    3.6 Cardinal Elements and First-Order Image
    Construction 47
    3.7 Image-Sided and Object-Sided Focal Lengths 49
    3.8 Ray-Height Ratios for Infinite Object and Image
    Distances 51
    3.9 Object- and Image-Distance Equations 53
    3.10 Locations of the Cardinal Points 56
    3.11 First-Order System Equations 57
    3.12 Graphic Image Construction 58
    Chapter Four Aberrations of Conic
    Reflectors 63
    4.1 Reflectors Represented by the Vertex Equation 63
    4.2 The Plane Mirror 65
    4.3 A Spherical Reflector with the Object Plane through
    the Center of Curvature 67
    4.4 On-Axis Aberrations of a Spherical Reflector 69
    4.5 Reflectors Represented by the Apo-Vertex Equation 77
    4.6 The Parabolic Reflector as a Telescope from Near-
    Normal to Grazing Incidence 80
    Chapter Five Third-Order Optics 85
    5.1 Third-Order Approximation of the Reflected-Ray
    Equations 86
    5.2 Coordinates of the Reflected Ray for a Single Surface
    with Entrance Pupil 89
    5.3 Coordinates and Aberrations of the Final Ray in a
    Compound System 93
    5.4 Relationships between the Aberration Coefficients 99
    5.6 Third-Order Aberrations of a Reversed System 101
    Chapter Six The Seidel Aberrations 105
    6.1 Aberration Equations for OflF-Centered Pupil Systems 105
    6.2 Distortion 110
    6.3 Spherical Aberration 113
    6.4 Coma 121
    CONTENTS ix
    6.5 Astigmatism and Field Curvature 127
    6.6 Aberrations of a Collimated Beam 134
    Chapter Seven Third-Order Correction of a
    One-Mirror System 137
    7.1 System Parameters and Seidel Aberrations 137
    7.2 General Characteristics 139
    7.3 The Cartesian Reflector 140
    7.4 The Spherical Reflector 141
    7.5 The Parabolic Reflector 146
    Chapter Eight Third-Order Correction of
    Two-Mirror Systems 151
    8.1 Two-Mirror System Parameters 151
    8.2 Aberration Coefficients for Two-Mirror Systems 153
    8.3 Two-Mirror Configurations 155
    8.4 Systems with All Finite Object and Image Distances 157
    8.5 The Focusing Telescope 162
    8.6 The Afocal Telescope 170
    8.7 Collimated Beam between Mirrors 174
    8.8 Two-Mirror Systems with a Spherical Primary 178
    8.9 Two-Mirror Systems with a Spherical Secondary 187
    8.10 Systems with Two Spherical Mirrors 189
    8.11 The Reflective Corrector 195
    Bibliography 204
    Chapter Nine Third-Order Correction of
    Three-Mirror Systems 207
    9.1 General Considerations 207
    9.2 Three-Mirror-System Parameters 210
    9.3 Aberration Coefficients for Three-Mirror Systems 214
    9.4 Three General Conies 217
    9.5 Three Cartesian Reflectors 224
    9.6 Three Spherical Mirrors 232
    9.7 Three-Reflection Two-Mirror Systems 235
    X CONTENTS
    9.8 Telescopes with Parabolic Primaries 244
    9.9 Telescopes with Spherical Primaries 252
    Bibliography 258
    Chapter Ten Third-Order Correction of
    Multimirror Systems 261
    10.1 First-Order System Parameters 261
    10.2 Correction Method 263
    10.3 Examples of Third-Order System Corrections 264
    10.4 The Corrector 266
    Bibliography 268
    Chapter Eleven Aberration Theory for
    Grazing-Incidence
    Systems 269
    11.1 Grazing-Incidence System Configuration 269
    11.2 The Single Grazing-Incidence Reflector 272
    11.3 Spherical Aberration of a Single Grazing-Incidence
    Reflector 279
    11.4 Coma of a Single Grazing-Incidence Reflector 282
    11.5 The Two-Mirror Grazing-Incidence System 284
    11.6 Aberrations of Two-Mirror Grazing-Incidence
    System 290
    11.7 Aberrations of Three-Mirror Grazing-Incidence.
    Systems 293
    Bibliography 299
    Chapter Twelve Stigmatic and Aplanatic
    Systems 303
    12.1 Stigmatism, Abbe's Sine Condition, and the Herschel
    Condition 303
    12.2 Abbe's Sine Condition and the Herschel Condition
    Applied to All-Reflective Imaging Systems 309
    12.3 Stigmatic and Aplanatic Surfaces 312
    12.4 Surface Representation and First-Order Layout 316
    CONTENTS XI
    12.5 The Stigmatic Multimirror System 320
    12.6 The Stigmatic Spherical-Primary Two-Mirror
    Telescope 325
    12.7 The Aplanatic Multimirror System 327
    12.8 The Aplanatic Two-Mirror System 337
    12.9 The Aplanatic Three-Mirror System 343
    12.10 Aplanatization of a Third-Order Corrected System 350
    Bibliography 353
    Index 355





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