Главная    Ex Libris    Книги    Журналы    Статьи    Серии    Каталог    Wanted    Загрузка    ХудЛит    Справка    Поиск по индексам    Поиск    Форум   
blank
Авторизация

       
blank
Поиск по указателям

blank
blank
blank
Красота
blank
Welford W. — Useful Optics
Welford W. — Useful Optics



Обсудите книгу на научном форуме



Нашли опечатку?
Выделите ее мышкой и нажмите Ctrl+Enter


Название: Useful Optics

Автор: Welford W.

Аннотация:

Students and professionals alike have long felt the need of a modern source of practical advice on the use of optical tools in scientific research. Walter T. Welford's Useful Optics meets this need.
Welford offers a succinct review of principles basic to the construction and use of optics in physics. His lucid explanations and clear illustrations will particularly help those whose interests lie in other areas but who nevertheless must understand enough about optics to create the experimental apparatus necessary to their research. Consistently emphasizing applications and practical points of design, Welford covers a host of topics: mirrors and prisms, optical materials, aberration, the limits of image formation and resolution, illumination for image-forming systems, laser beams, interference and interferometry, detectors and light sources, holography, and more. The final chapter deals with putting together an experimental optics system.

Many areas of the physical sciences and engineering increasingly demand an appreciation of optics. Welford's Useful Optics will prove indispensable to any researcher trying to develop and use effective optical apparatus. Walter T. Welford (1916-1990) was professor of physics at Imperial College of Science, Technology and Medicine from 1951 until his death. He was a Fellow of the Royal Society and of the Optical Society of America.


Язык: en

Рубрика: Физика/Электромагнетизм/Оптика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1991

Количество страниц: 140

Добавлена в каталог: 09.10.2005

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
blank
Предметный указатель
Off-axis aberration and aperture stop      35
Optical design      42—43
Optical glasses      19
Optical materials for mirrors      19 23 24
Optical materials for the transparent      19
Optical materials for the ultraviolet      22
Optical materials for the visible and infrared      19 23
Optical path length      3 26
Optical processing      57
Optical processing in tandem      51 52
Optical processing, lining up of      128
Optical processing, symmetrical      3
Optical processing, tables for      128
Optical transfer function      49—50
Optics, Gaussian      5 7 25
Optics, Gaussian, defined      27
Optics, geometrical      1 2
Optics, models of      1
Optics, paraxial      5
Optics, quantum      1
Paraxial angles      6
Paraxial optics      5
Partial coherence      52 53
Partial coherence and image formation      88
Pechan prism      15
Pellin — Broca prism      18
Phasar diagram      89
Phase grating      104
Phase object      121
Phasefronts      2
Photocathodes      91—92
Photochemical detection      94—95
Photoelastic effect      104
Photometry      94 97—98
Photomultipliers      92 96
Photon counting      96
Photoresists      115
pixels      94
Plane mirrors      12
Planes, conjugate      5
Plastics      22
Playback beam      114
Point source      2
Point spread      44 45
Point spread function, amplitude      53
Point spread function, geometrical optics      50 52
Polarization and quasimonochromatic light      89
Polarizing reflecting surface      15 16
Polychromatic light      52
Power of a thin lens, equation for      21
Power of optical systems      6
Pressure window      22
Principal foci, defined      5
Principal planes, defined      5
Principal ray      9 10
prisms      12 15
Prisms, beam-splitting      15
Prisms, combining      15
Prisms, dispersing      16 17
Prisms, Dove      14 15
Prisms, Pechan      15
Prisms, Pellin — Broca      18
Prisms, reversing      13
Prisms, right-angle      13
Pulsed lasers      126—128
Pupil      9
Pupil, entrance      9 10
Pupil, exit      9 10
Pyrex      23
Quantum efficiency, defined      91
Quantum optics      1
Quasimonochromatic light      88—89
Radiance conservation      64
Radiance conservation in geometrical optics      64—65
Radiance conservation in single-mode lasers      99
Radiation      1
Radiation, sources      97—100
Radiometry      58—59
Raman — Nath mode      104
Ray aberrations      25
Ray aberrations, transverse      26
Rays, principal      9
Rays, reference      9
Rays, skew      25
RayTracing      25 26 28
Raytracing for plane gratings      110
Raytracing, paraxial      8
Reconstruction beam      114
Reference beam      114
Reference sphere      28 29
Reflectance of multilayers      74
Reflecting surfaces, dichroic      15 16
Reflecting surfaces, neutral      16
Reflecting surfaces, polarizing      15 16
Reflecting systems      41—42
Reflection, Fresnel formula for      71—72
Reflection, law of      3
Reflector, cube-corner      13
Reflector, roof      13
Refraction, Fresnel formula for      71—72
Refractive index      2 19 36
Refractive index and temperature      20 21
Refractive index of optical glasses      21
Refractive index, continuously varying      3
Refractive index, homogeneity      19
Refractive index, inhomogeneity      20
Refractive index, nonlinear      20
Relative aperture      59
Relative visibility curve      97
Relay optics      125
Resolution limit      44 53
Resolution limit, defined      46
Resolving power      44 45 123
Right-angle prism      15
Rotating holograms      102
Rotating mirrors      101
Rowland circle      112
Sagittal focal lines      32
Sagittal section      31
SAPpHiRe      23
Scalar diffraction theory      54—55
Scalar wave theory      44
Scalar waves      1
Scanners      102
Scanning microscope      106—107
Scanning system, defined      101
Scanning, electro-optical      103—104
Scanning, mechanical      101—103
Scatter      64
Scattering      1
Schmidt camera      40 43
Seidel aberrations      37
Seidel aberrations and Strehl tolerance limit      49
Seidel coma      30
Semiconductor detectors      92—93
Seya mounting      112—113
Shot noise      92 95 96
Signal chopping      96
Signal-to-noise ratio      90
Skew rays      25
Snell's law      2—4 17 25 71 73
Snell's law and aberrational system behavior      36
Spatial filtering      57
Spatial frequency      49
Speckle      63 115
Spectacle crown      125
Spectrophotometers      96
Spectroscopic resolving power, equation for      16
Spectrum line curvature      17
Spectrum line curvature, equation for      16
Spherical aberrations of thin lenses      37
Spherical aberrations, longitudinal      28
Spherical surfaces      40
Spot diagram      28 30 44
Star space      15 29 30
Steady-state solution      76
Stop band      78
Strehl tolerance system      46—48
Substage condenser      61
Symmetrical systems      39—40
Symmetry, axis of      5
Synchronous rectification      96 97
Tables for optical systems      128
Tangential focal lines      32
Tangential section      31
Telecentric aperture stop      9 10
Telescopic system      10 11
Thermal band      23
Thermal detectors      94
Thermal expansion      20 21
Thermal noise      92
Thick holograms      115
Thin holograms      115
Thin-film multilayers      71—81
Total internal reflection      12 13 15
Tracing of Gaussian beams      68—69
Transfer function, optical      50
Transformation temperature      20 21
Transients      76
Transillumination      121
Transmittance of multilayers      74
Transverse chromatic aberration      36
Transverse coherence      88
Transverse color      36
Transverse magnification      6 7
Transverse ray aberrations      26 29
Truncation of Gaussian beams      69
Two-point resolution criterion      46
Twyman — Green Interferometer      86
Ultraviolet, optical materials for the      22
Unpolarized light      89
V-value, in dispersion      19
Vacuum ultraviolet spectroscopy      112
Variable polarization retarders      21
Verdet constant      20
Vignetted beam      9
Visible light      97—98
Wavefront      2
Wavefront, aberration      29 30
Wavefront, ideal      28
Wavelength dependence of multilayers      73
Wavelength selection, with plane gratings      110
Wavelengths, limits to range of      74—75
X-rays      56
Young's Experiment      86—87
Young, T.      86—87
Zinc selenide      23
Zinc sulphide      23
1 2
blank
Реклама
blank
blank
HR
@Mail.ru
       © Электронная библиотека попечительского совета мехмата МГУ, 2004-2025
Электронная библиотека мехмата МГУ | Valid HTML 4.01! | Valid CSS! О проекте