Optoelectronics and Photonics: Principles and Practices

Optoelectronics and Photonics: Principles and Practices
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发表时间:
2001-02
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通讯作者:
S. Kasap
S. Kasap
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作者:
S. Kasap

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(NOTE:每一章都以问题和难题结尾。)1.光的波动性均匀介质中的光波折射率。群速度和群指数。磁场、辐照度和坡印亭矢量。Snell定律和全内反射(TIR)。菲涅耳方程多重干涉与光学谐振腔。古斯-汉臣与光调谐时间和空间的一致性。衍射原理2.介质波导和光纤。对称平面介质平板波导。平面波导中的模色散和波导色散。阶跃折射率纤维。数值孔径单模光纤中的色散。比特率、色散、电带宽和光带宽。渐变折射率光纤光吸收和散射。光纤中的衰减。纤维制造。3.半导体科学与发光二极管。半导体概念和能带。直接和间接带隙半导体:E-k图。pn结原理pn结能带图。发光二极管。LED材料异质结高强度LED。LED特性。光纤通信用LED。4.受激发射器件激光器。受激发射和光子放大。受激辐射率和爱因斯坦系数。光纤放大器气体激光器:He-Ne激光器。气体激光器的输出光谱。激光振荡条件。激光二极管的原理异质结构激光二极管。基本激光二极管特性。稳态半导体速率方程。光纤通信用光发射器。单频固体激光器。量子阱器件垂直腔面发射激光器(VCSEL)。光学激光放大器全息照相术。5.光电探测器。pn结光电二极管的原理。Ramo定理与外光电流吸收系数与光电二极管材料。量子效率和响应度。PIN光电二极管。雪崩光电二极管。异质结光电二极管光电晶体管。光电导探测器和光电导增益。光电探测器中的噪声。6.光伏器件。太阳能光谱光伏器件原理pn结光伏I-V特性。串联电阻和等效电路。温度效应。太阳能电池材料、器件和效率。7.光的偏振和调制。极化光在各向异性介质中的传播:双折射。双折射光学器件旋光性与圆双折射电光效应。集成光调制器。声光调制器磁光效应非线性光学与二次谐波产生。符号和缩写。指数.光盘:光电子学和光子学目录。
(NOTE: Each chapter concludes with Questions and Problems.) 1. Wave Nature of Light. Light Waves in a Homogeneous Medium. Refractive Index. Group Velocity and Group Index. Magnetic Field, Irradiance and Poynting Vector. Snell's Law and Total Internal Reflection (TIR). Fresnel's Equations. Multiple Interference and Optical Resonators. Goos-Hanchen and Optical Tunneling. Temporal and Spatial Coherence. Diffraction Principles. 2. Dielectric Waveguides and Optical Fibers. Symmetric Planar Dielectric Slab Waveguide. Modal and Waveguide Dispersion in the Planar Waveguide. Step Index Fiber. Numerical Aperture. Dispersion in Single Mode Fibers. Bit-Rate, Dispersion, Electrical and Optical Bandwidth. The Graded Index Optical Fiber. Light Absorption and Scattering. Attenuation in Optical Fibers. Fiber Manufacture. 3. Semiconductor Science and Light Emitting Diodes. Semiconductor Concepts and Energy Bands. Direct and Indirect Bandgap Semiconductors: E-k Diagrams. pn Junction Principles. The pn Junction Band Diagram. Light Emitting Diodes. LED Materials. Heterojunction High Intensity LEDs. LED Characteristics. LEDs for Optical Fiber Communications. 4. Stimulated Emission Devices Lasers. Stimulated Emission and Photon Amplification. Stimulated Emission Rate and Einstein Coefficients. Optical Fiber Amplifiers. Gas Laser: The He-Ne Laser. The Output Spectrum of a Gas Laser. LASER Oscillation Conditions. Principle of the Laser Diode. Heterostructure Laser Diodes. Elementary Laser Diode Characteristics. Steady State Semiconductor Rate Equation. Light Emitters for Optical Fiber Communications. Single Frequency Solid State Lasers. Quantum Well Devices. Vertical Cavity Surface Emitting Lasers (VCSELs). Optical Laser Amplifiers. Holography. 5. Photodetectors. Principle of the pn Junction Photodiode. Ramo's Theorem and External Photocurrent. Absorption Coefficient and Photodiode Materials. Quantum Efficiency and Responsivity. The pin Photodiode. Avalanche Photodiode. Heterojunction Photodiodes. Phototransistors. Photoconductive Detectors and Photoconductive Gain. Noise in Photodetectors. 6. Photovoltaic Devices. Solar Energy Spectrum. Photovoltaic Device Principles. pn Junction Photovoltaic I-V Characteristics. Series Resistance and Equivalent Circuit. Temperature Effects. Solar Cells Materials, Devices and Efficiencies. 7. Polarization and Modulation of Light. Polarization. Light Propagation in an Anisotropic Medium: Birefringence. Birefringent Optical Devices. Optical Activity and Circular Birefringence. Electro-Optic Effects. Integrated Optical Modulators. Acousto-Optic Modulator. Magneto-Optic Effects. Non-Linear Optics and Second Harmonic Generation. Notation and Abbreviations. Index. CD-ROM: Optoelectronics and Photonics Contents.