Diffraction [electronic resource] : coherence in optics / by M. Françon. Translated from the French by Barbara Jeffrey. Translation edited by J.H. Sanders.

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Bibliographic Details
Online Access: Full Text (via ScienceDirect)
Main Author: Françon, M. (Maurice), 1913-1996
Other title:Diffraction. English.
Format: Electronic eBook
Language:English
French
Published: Oxford ; New York : Pergamon Press, [1966]
Edition:[1st ed.]
Series:Commonwealth and international library. Physics division.
Subjects:

MARC

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240 1 0 |a Diffraction.  |l English. 
245 1 0 |a Diffraction  |h [electronic resource] :  |b coherence in optics /  |c by M. Françon. Translated from the French by Barbara Jeffrey. Translation edited by J.H. Sanders. 
250 |a [1st ed.] 
260 |a Oxford ;  |a New York :  |b Pergamon Press,  |c [1966] 
300 |a 1 online resource (ix, 139 pages) :  |b illustrations. 
336 |a text  |b txt  |2 rdacontent. 
337 |a computer  |b c  |2 rdamedia. 
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490 1 |a The Commonwealth and international library. Physics division. 
504 |a Includes bibliographical references (pages 135-137) 
505 0 |6 880-01  |a Front Cover; Diffraction: Coherence in Optics; Copyright Page; Table of Contents; Preface; CHAPTER I. Huygens' Principle and Diffraction Phenomena for a Monochromatic Point Source; 1.1 Diffraction at infinity and at a finite distance; 1.2 Light vibrations; 1.3 The Huygens-Fresnel principle; 1.4 Simplified expressions for the field; 1.5 Calculation of the path difference; 1.6 The general expression for the luminous intensity at P'; CHAPTER II. Diffraction by an Aperture of Simple Form; 2.1 Diffraction by a rectangular aperture; 2.2 Diffraction by a narrow slit. 
505 8 |a 4.2 Diffraction by a large number of apertures, identical in shape and orientation, irregularly distributed over the diaphragm4.3 Complementary screens. Babinet's theorem; 4.4 Diffraction by two identical slits; 4.5 Diffraction by three identical slits; 4.6 Diffraction by many slits; CHAPTER V. Extended Luminous Sources and Objects. Coherence; 5.1 Spatial coherence and time-coherence; 5.2 The relation between the length of wave trains and the spectral width of the emitted radiations. Coherence length and coherence time. 
505 8 |a 5.3 The vibratíon emitted by an atom. The variation in the complex amplitude of the vibration during a wave train5.4 The successive wave trains emitted by an atom; 5.5 Vibrations from two different atoms which radiate the same mean frequency Vo (quasi-monochromatic light); 5.6 Vibrations with different frequencies from a single atom; 5.7 Vibrations with the same frequency from a single atom; 5.8 The representation of the emission of an incoherent light source; 5.9 The influence of tíme-coherence on diffraction phenomena. The diffraction spot in quasi-monochromatic light. 
505 8 |a 5.10 Spatially coherent and incoherent objects5.11 The image of an extended object illuminated with spatially incoherent light; 5.12 The image of an extended object illuminated with spatially coherent light; CHAPTER VI. Diffraction Phenomena in Perfect Optical Instruments; 6.1 Resolving power and the limit of perception in optical instruments; 6.2 Diffraction gratings; 6.3 Phase contrast; 6.4 Dark ground method; 6.5 Apodization; 6.6 Filtering spatial frequencies (incoherent object); CHAPTER VII. Diffraction Phenomena in Real Optical Instruments; 7.1 Diffraction in the case of a spherical wave. 
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776 0 8 |i Print version:  |a Françon, M. (Maurice), 1913-  |s Diffraction. English.  |t Diffraction.  |b [1st ed.].  |d Oxford, New York, Pergamon Press [1966]  |w (DLC) 65028098  |w (OCoLC)384854. 
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880 0 |6 505-01/(S  |a 2.3 Diffraction by a circular aperture2.4 The asymptotic expansion for large values of Ζ; 2.5 The distribution of luminous flux in the Airy spot; CHAPTER III. The Fourier Transformation; 3.1 The representation of a periodic function by a Fourier series; 3.2 The Fourier integral; 3,3 Some Fourier transforms; 3.4 General properties connecting the wave surface with the diffraction pattern; CHAPTER IV. Diffraction by Several Apertures; 4.1 Diffraction by several apertures identical in shape and orientation. 
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