Modern Classical Optics(现代经典光学),作者:(英国)布鲁克(Brooker.G)

发布:cyqdesign 2010-01-29 22:58 阅读:12158
《现代经典光学》从现代的视角描述了经典光学,也可称为“半经典光学”。书中内容大都与经典光学相关,包含了相关的现象、仪器和技术,以及一些常见的主题:衍射、干涉、薄膜和全息光学,也涉及了高斯光束激光腔、cD阅读器和共焦显微镜。涉及少量的量子光学。《现代经典光学》内容丰富、新颖,讲解透彻,各章最后均附有相关习题,书末附有部分习题的解答,可供高年级本科生及低年级研究生参阅,也可作为相关领域研究人员的参考书。 a;^lOU|L{  
《现代经典光学》作者为牛津大学物理系的Geoffrey Brooker。 <xF]ca  
《牛津大学研究生教材系列》介绍了物理学的主要领域的知识和柑关应用,旨在引导读者进入相关领域的前沿。丛书坚持深入浅出的写作风格,用丰富的示例、图表、总结加深读者埘内容的理解。书中附有习题供读者练习。 :fwtPvLo  
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1 Electromagnetism and basic optics >$9}"  
1.1 Introduction 'Etq;^H  
1.2 The Maxwell eqiations 7n.Oem  
1.3 Linear isotropic media [`qdpzUp&  
1.4 Plane electromagnetic waves 0+$gR~^^  
1.5 Energy flow d"miPR  
1.6 Scalar wave amplitudes dr}PjwW%  
1.7 Dispersive media 8 /t';  
1.8 Electrical transmission lines Uavl%Q  
1.9 Elementary(ray)optics knYp"<qj  
1.9.1 The thin lens ls&H oJ7  
1.9.2 Sign conventions ~CkOiWC0  
1.9.3 Refraction at a spherical surface k_,& Q?GtU  
1.9.4 The thick lens 5\XD/Q M  
1.10 Rays and waves ^d{5GK'  
Problems ;s{' cN[.  
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2 Fourier series and Fourier transforms <{bxOr+  
2.1 Introduction w-# f^#  
2.2 Fourier series:spectrum of a periodic waveform @-L]mLY  
2.3 Fourier series:a mathematical reshape eh<mJL%T  
2.4 The Fourier transform:spectrum of a non-periodic waveform t1o 6;r K  
2.5 The analytic signal AQ@)'  
2.6 The Dirac δ-function p> >H$t  
2.7 Frequency and angular frequency d[p2? ]  
2.8 The power spectrum ?.%dQ0  
2.9 Examples of Fourier transforms -u'"l(n)~  
2.9.1 A single rectangular pulse J](NCD  
2.9.2 The double pulse 6(d6Uwc`  
2.9.3 A δ-function pulse 4Ex&AR8  
2.9.4 A regular array of δ-functions e 9RYk:O  
2.9.5 A random array of δ-functions zA>X+JH>iw  
2.9.6 An infinite sinewave )]FXUz|;  
2.10 Convolution and the convolution theorem +sjzT[ Dn  
2.11 Examples of convoltion {~&Q"8 }G  
2.12 Sign choices with Fourier transforms  *0^~@U  
problems 'WE"$1  
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3 Diffraction cI\[)5&  
3.1 Introduction =dDPQZEin  
3.2 Monochromatic spherical wave -Q@f),  
3.3 The Kirchhoff diffraction integral > d p/  
3.4 The Kirchhoff boundary conditions ?l?l<`sTO  
3.5 Simplifying the Kirchhoff inregral q0VAkVHw4  
3.6 Complementary screens:the Babinet principle <JWU@A-.y  
3.7 The Fraunhofer condition I:provisional S\8v)|Pr  
3.8 Fraunhofer diffraction in'one dimension' iLuC_.'u=  
3.9 Fraunhofer diffraction in'two dimensions' HS{Vohy>  
3.10 Two ways of looking at diffraction ?#=xx.cF  
3.11 Examples of Fraunhofer diffraction Uc {m##!  
3.12 Fraunhofer diffraction and Fourier transforms Vn sV&cx  
3.13 The Fraunhofer condition Ⅱ:Rayleigh distance and Fresnel number Fb]+h)on  
3.14 The Fraunhofer condition Ⅲ:object and image =b:XL#VA  
3.15 The Fresnel case of diffraction >bf.T7wy  
3.16 Fraunhofer diffraction and optical resolution G5/A {1sz&  
3.17 Surfaces whose fields are related by a Fourier transform /ki-Tha  
3.18 Kirchhoff boundary conditions:a harder look {+WY,%e  
Problems F/5G~17  
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4 Diffraction gratings .yZLC%}  
4.1 Introduction .A<Hk1(-)  
4.2 A basic transmission grating F&czD;F  
4.3 The multiple-element pattern x5Lbe5/P  
4.4 Reflection grating W^ L ^7  
4.5 Blazing 6Bjo9,L  
4.6 Grating spectrometric instruments 5N|LT8P}Z  
4.7 Spectroscopic resolution b`#YJpA  
4.8 Making gratings Fk/I (Q  
4.9 Tricks of the trade w!20  
4.9.1 Normal spectrum kx;X:I(5&P  
4.9.2 Correct illumination Z\CvaX  
4.9.3 Shortening exposure times with a spectrograph Deh3Dtg/k  
4.9.4 Vacuum instruments baII!ks  
4.9.5 Double monochromator r$={_M$  
4.9.6 An inventor's paradise Bgm8IK)6  
4.10 Beyond the simple theory cr!W5+r  
Problems ?^%[*OCCC!  
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5 The Fabry-Perot R}0gIp=  
5.1 Introduction 6AAvsu:  
5.2 Elementary theory d,(y$V+  
5.3 Basic apparatus 4<#ItQ(  
5.4 The meaning of finesse vzg^tJ  
5.5 Free spectral range and resolution 2 L4[~>  
5.5.1 Free spectral range N^rpPq  
5.5.2 Resolution p<r<Y %  
5.6 Analysis of an étalon fringe pattern ISpV={$Zd  
5.7 Flatness and parallelism of Fabry-Perot plates ,_kw}_n=  
5.8 Designing a Fabry-Perot to do a job 'lZlfS:Z8  
5.9 Practicalities of spectroscopy using a Fabry-Perot _C/|<Ot:  
5.10 The Fabry-Perot as a source of ideas &IUA[{o~e  
Problems EE  1D>I  
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6 Thin films gt}Atr6>_  
6.1 Introduction SF:98#pg  
6.2 Basic calculation for one layer $k\bP9  
6.3 Matrix elimination of'middle'amplitudes 1YV1 Xnn,  
6.4 Reflected and transmitted Waves L[2qCxB'^  
6.5 Impedance concepts a20w.6F  
6.6 High-reflectivity mirrors .Od:#(aq  
6.7 Anti-reflection coatings PuP"( M  
6.8 Interference filters 71nZi`AR  
6.9 Practicalities of thin-film deposition 0(y*EJA$  
Problems r*`e%`HU  
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7 Ray matrices and Gaussian beams ,zoHmV1Wd+  
7.1 Introduction .z,-ThTH@\  
7.2 Matrix methods in ray optics 'r!!W0-K  
7.3 Matrices for translation and refraction s5@BVD'}E  
7.4 Reflections MF"*xr v  
7.5 Spherical waves 1yE',9?  
7.6 Gaussian beams FAnz0p+t  
7.7 Properties of a Gaussian beam 5<(* +mP`  
7.8 Sign conventions 6)^*DJy  
7.9 Propagation of a Gaussian beam fYP,V0P  
7.10 Electric and magnetic fields B9"o Ru^}  
Problems v)du]  
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8 Optical cavities YdCl  
8.1 Introduction V4R s  
8.2 Gauss-Hermite beams R1LirZlzJ  
8.3 Cavity resonator IE\RP!  
8.4 Cavity modes `C>h]H(  
8.5 The condition for a low-loss mode $=plAi  
8.6 Finding the mode shape for a cavity *,X)tZ6VX  
8.7 Longitudinal modes %DiQTg7V,  
8.8 High-loss cavities Wmd@%K  
8.9 The symmetrical confocal cavity R9A:"sJ  
8.10 The confocal Fabry-Perot @JlT*:Dz  
8.11 Choice of cavity geometry for a laser %_Vz0 D! 7  
8.12 Selection of a desired transverse mode !hQ-i3?qm  
8.13 Mode matching 7%"|6dw  
Problems hFA |(l6  
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9 Coherence:qualitative k$%{w\?Jf  
9.1 Introduction $R #_c}  
9.2 Terminology j4i$2ZT'  
9.3 Young fringes:tolerance to frequency range jF;<9-m&  
9.4 Young fringes:tolerance to collimation aZ~e;}w.Zq  
9.5 Coherence area p_Xfj2E4c  
9.6 The Michelson stellar interferometer LkJq Bg  
9.7 Aperture synthesis ZiR}S  
9.8 Longitudinal and transverse coherence _(f@b1O~  
9.9 Interference of two parallel plane waves l^R:W#*+U  
9.10 Fast and slow detectors O;VqrO  
9.11 Coherence time and coherence length 8x1!15Wiz  
9.12 A Michelson interferometer investigating longitudinal coherence eFs5 l  
9.13 Fringe visibility ;*qXjv& K  
9.14 Orders of magnitude uO1^Q;F  
9.15 Discussion ? /!Fv/  
9.15.1 What of lasers? R,D/:k'~k  
9.15.2 The Young slits:another look {($mLfC4  
9.15.3 Fast and slow detectors:another look Qf0P"s`  
9.15.4 Grating monochromator:another look %t_'rv  
9.15.5 Polarized and unpolarized light i-0 :Fs  
Problems Q% aF~  
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10 Coherence:correlation functions g[i;>XyP  
10.1 Introduction T+XcEI6w  
10.2 Correlation function:definition 6'*6tS  
10.3 Autocorrelation and the Michelson interferometer @GAj%MK$  
10.4 Normalized autocorrelation function JL_(%._J  
10.5 Fringe visibility T|\sN*}\8J  
10.6 The Wiener-Khintchine theorem 1N _"Mm{  
10.7 Fourier transform spectroscopy ^'Lp<YJs6  
10.8 Partial coherence:transverse CxaI@+  
10.9 The van Cittert-Zernike theorem 7V=deYt_p  
10.10 Intensity correlation rs4:jS$)  
10.11 Chaotic light and laser light fX9b1x  
10.12 The Hanbury Brown-Twiss experiment >;G_o="X  
10.13 Stellar diameters measured by intensity correlation o7we'1(O  
10.14 Classical and quantum optics 1Mq"f 7X8  
Problems ;Uch  
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11 Optical practicalities:étendue,interferometry,fringe localization L~+aD2 E {  
11.1 Introduction %zc.b  
11.2 Energy flow:étendue and radiance uu4! e{K  
11.3 Conservation of étendue and radiance 7y&=YCkc7  
11.4 Longitudinal and transverse modes KX x+J}n  
11.5 étendue and coherence area ST#)Fl  
11.6 Field modes and entropy :6C R~p  
11.7 Radianee of some optical sources xz@*V>QT  
11.7.1 Radiance of a black body miBCq l@x  
11.7.2 Radiance of a gas-discharge lamp  `&a8Wv  
11.7.3 Radiance of a light-emitting diode (LED c5f57Z  
11.8 étendue and interferometers or ~@!  
11.9 大Etendue and spectrometers 6/QWzw.0c  
11.10 A design study:a Fourier-transform spectrometer w2 (}pz:  
11.11 Fringe locahzation .nr%c*JUp  
Problems 0*^f EoV  
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12 Image formation:diffraction theory !bK;/)  
12.1 Introduction ; mV>k_AG  
12.2 Image formation with transversely Coherent illumination informal p^{yA"MQ  
12.3 Image formation:ideal optical system N<(rP1)`v  
12.4 Image formation:imperfect optical system %xx;C{g;a  
12.5 Microscope resolution:Abbe theory 4u p7 :?  
12.5.1 Abbe theory:introduction +CEt:KQ   
12.5.2 Abbe theory:explanation |L;Hd.l7^*  
12.6 Improving the basic microscope 6EWCJ%_  
12.7 Phase contrast pOy(XUV9O  
12.8 Dark-ground illumination ctgH/SU  
12.9 Schlieren |[V6R\l39  
12.10 Apodizing ]w)uo4<^J  
12.11 Holography <1sUK4nQ,  
12.12 The point spread function *}r6V"pH~  
12.13 Optical transfer function;modulation transfer function y#ON=8l  
Problems 99zMdo S  
13 Holography cw BiT  
13.1 Introduction " H=fWz5z  
13.2 Special case:plane-wave obiect beam and plane-wave reference beam +ZwTi!W  
13.3 The intensity of the reference beam }sZy|dd  
13.4 The response of a photographic emulsion BhyLcUBuB  
13.5 The theory of holography ,({% t  
13.6 Formatiol of an image _}`y3"CD7  
13.7 What if we break a hologram in half? u7wZPIC{_  
13.8 Replay with changed optical geometry {=^<yK2q  
13.9 The effect of a thick photographic emulsion w@N)Pu  
13.10 Phase holograms up3m um  
13.11 Gabor's holograms sYTToanA$?  
13.12 Practicalities SZgan  
13.13 Applications of holography )]}68}9  
Problems Q|Pm8{8  
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14 Optical fibres b!;WF  
14.1 Introduction [/cJc%{N  
14.2 Fibre optics:basics 8/9YR(H3H  
14.3 Transverse modes '(:R-u!pp  
14.4 Dispersion RCGpZyl  
14.4.1 Material dispersion :)Nk  
14.4.2 Intermodal and intramodal dispersion >&qaT*_g  
14.5 Multimode fibres BGT`) WP  
14.6 Single-mode fibres ,+g0#8?p^x  
Problems mc6W"  
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15 Polarization `O,"mm^@U  
15.1 Introduction PPtJ/ }\  
15.2 Anisotropic media # f{L;  
15.3 The mathematics of anisotropy wlX K2D  
15.4 The understanding of tensorεij H: ;S1D  
15.5 The Faraday effect |SsmVW$B|  
15.6 Optical activity ) nn v{hN  
Problems kL}*,8s{  
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16 Two modern optical devices Ef6LBNWY.  
16.1 Introduction QTI^?@+N>  
16.2 Compact disc:description of the disc /%^^hr  
16.3 Compact disc:the encoding scheme ]O68~+6  
16.4 Optics of reading a compact disc  ~\+m o  
16.5 Feedback systems O%s?64^U  
16.5.1 Correction of tracking }Mh`j $  
16.5.2 Correction of focus +?[iB"F  
16.6 CD-ROM !L' O")!3  
16.7 DVD ) ]]PhGX~  
16.8 The confocal microscope }D#[yE,=\  
16.9 Confocal microscope:resolution hrnY0  
16.10 The confocal microscope:depth of focus oO,"B8a  
Problems v%2Jm!i+  
Notes on selected problems 8J#TP7;  
Bibliography 2k""/xMF'  
Index PxZMH=  
……  AQz&u  
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关键词: 光学
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最新评论

shizrong 2012-03-06 16:22
好书,帮顶。
漫语 2012-06-01 08:54
书不错,有机会买本
372602395 2012-11-06 15:47
属于科普性的读物。没有实际参考价值。
lxfxp 2013-04-16 17:38
多谢,共享
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