《现代通信光电子学》 第六版,大名鼎鼎的雅里夫就不用多介绍了吧,希望觉得好的XD们顶一下 #p^D([k
\
Photonics: Optical Electronics in Modern Communications H=0Y4 T@)T
Hardcover: 848 pages Xh?{%?2
Publisher: Oxford University Press, USA; 6 edition (January 26, 2006) o;t{YfK
Language: English cng1k
ISBN-10: 0195179463 NS\'o
)J
ISBN-13: 978-0195179460 1_A< nt?'R
Product Dimensions: 9.3 x 7.7 x 1.4 inches 5z0SjQ
[ post]Product Description o^Ms(?K%t
Due to its central role in modern communications technologies, photonics--or optical electronics--has evolved dynamically over the last ten years. Photonics by Amnon Yariv and Pochi Yeh is extensively revised and updated to keep pace with this unprecedented development. Now more tailored to optical communication, the sixth edition integrates material on generating and manipulating optical radiation and designing photonic components for the transmission of information. It also presents a broader theoretical underpinning and more explanations of mathematical derivations than the previous edition. {L#Pdj{
The text describes the basic physics and principles of operation of major photonic components in optical communications and electronics. These components include optical resonators, various lasers, waveguides, optical fibers, gratings, and photonic crystals. photonics, Sixth Edition, also covers the transmission, modulation, amplification, and detection of optical beams in optical networks, as well as nonlinear optical effects in fibers. It assumes a background in electromagnetic theory, Maxwell's equations, and electromagnetic wave propagation. 'E9\V\bi
Including numerous examples throughout, Photonics, Sixth Edition, is ideal for advanced undergraduate and graduate courses in photonics, optoelectronics, or optical communications. It is also a useful reference for practicing engineers and scientists. tYnNOK*|
New Material in the Sixth Edition <|v]9`'
Stokes Parameters and Poincare Sphere: polarization states in birefringent optical networks, principal states of polarization DwoO([&I
Fermat's Principle: rays, beam propagation, and the Fresnel diffraction integral W)\~T :Kn
Matrix Formulation: wave propagation in multi-cavity etalons, multi-layer structures, mode coupling, and supermodes in mode-locked lasers .2`S07Z
Dispersion: chromatic dispersion and polarization mode dispersion (PMD) in fibers and their compensation Jg@PhN<9
Coupled Resonators Optical Waveguides (CROWs): matrix formulation, critical coupling and dispersion relation dD=dPi#
Nonlinear Optical Effects in Fibers: self-phase modulation, cross-phase modulation, stimulated Brillouin scattering (SBS), stimulated Raman scattering (SRS), optical four-wave mixing, and spectral reversal (phase conjugation) %GJ,&b|
Electroabsorption: waveguide electro-optic Mach-Zehnder modulators 1Eh(U
Photonic Crystals: Bloch wave formulation, photonic bands, photonic bandgaps, periodic layered media, fiber Bragg gratings, and Bragg reflection waveguides 0 j6/H?OT
Optical Amplifiers: SOA, EDFA, and Raman l/Sb JrM*
.Ir 5gz
About the Author >XBLm`a
t'^/}=c-
Amnon Yariv is Martin and Eileen Summerfeld Professor of Applied Physics at the California Institute of Technology. !iMsTH<
Pochi Yeh is Professor of Electrical & Computer Engineering at the University of California, Santa Barbara. YqYCW}$
9\V^q9l
1. Electromagnetic Fields and Waves <}G7#xg
2. Rays and Optical Beams J@52<.>6
3. Guided waves in Dielectric Slabs and Fibers M5wj79'l"
4. Optical Resonators p9 %7h.
5. Interaction of Radiation and Atomic Systems NT:p6(s^
6. Theory of Laser Oscillation and Some Specific Laser Systems
TwY]c<t
7. Chromatic Dispersion and Polarization Mode Dispersion in Fibers
1I_(!F{Ho
8. Nonlinear Optics H.*XoktC]
9. Electro-Optic Modulation of Laser Beams k5(@n>p
10. Noise in Optical Detection and Generation -r[l{ce
11. Detection of Optical Radiation rlgp1>89
12. wave propagation in Periodic Media Or0=:?4`
13. Waveguide Coupling ;:f.a(~c
14. Nonlinear Optical Effects in Fibers >a[)F
15. Semiconductor Lasers-Theory and Applications 5EM(3eY ^q
16. Advanced Semiconductor Lasers ,'[0tl}8K
17. Optical Amplifiers 0X.pI1jCO
18. Classical Treatment of Quantum Noise and Squeezed States F8f@^LVM/
%+qD-{&
Appendixes: 6Z0@4_Y@B6
A. Wave Equation in Cylindrical Coordinates and Bessel Functions Jc/*w
B. Exact Solutions of the Step-Index Circular Waveguide LNtBYdB`pK
C. Kramers-Kronig Relations ^As^hY^p
D. Transformation of a Coherent Electromagnetic Field by a Thin Lens VD,g
E. Fermi Level and its Temperature Dependence (i1]+.
F. Electro-optic Effect in Cubic 43m Crystals YRqIC -_
G. Conversion for Power Units and Attenuation Units