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- ISBN:9787122382689
- 装帧:一般胶版纸
- 册数:暂无
- 重量:暂无
- 开本:16开
- 页数:215
- 出版时间:2021-05-01
- 条形码:9787122382689 ; 978-7-122-38268-9
本书特色
本书内容丰富,涵盖光电子学基本理论和实际应用两部分内容。 本书基础部分,介绍了半导体物理、半导体器件、全息与傅里叶光学、电磁场与电磁波的基础知识; 应用部分介绍了激光器、光纤通信、非线性光学、光子晶体光纤等前沿知识。 通过阅读本书可使读者在不知不觉间进入到光电子学研究的前沿。
内容简介
《光电信息科学与工程专业英语》是以光电技术行业对复合型人才的培养需求为导向编写的专业英语教材,主要涉及了半导体物理、半导体器件、电磁场和电磁波、激光器和光纤通信等方面的内容。同时,每章还对重点词语和疑难句进行了解析,介绍了科技英语翻译的相关知识,旨在使学生掌握专业基础词汇、提高专业文献的阅读和翻译能力,拓展和深化学生对本专业基础知识和相关技术的了解与掌握。 《光电信息科学与工程专业英语》体系合理、题材广泛、内容丰富,可作为高等院校及科研院所光电信息、电子信息、计算机、应用物理以及科技英语翻译等专业本科生教材,也可作为研究生及留学生教材,还可作为上述领域科研技术人员的参考书。
目录
Unit 1 Semiconductor Physics/ 1
1.1Energy Bands and Carrier Concentration/ 1
1.2Carrier Transport Phenomena/ 8
1.3PN Junction/ 14
Unit 2 Semiconductor Devices/ 25
2.1Bipolar Junction Transistors/ 25
2.2The MOSFET/ 38
2.3Microwave and Photonic Devices/ 51
Unit 3 Holography and Fourier Optics/ 56
3.1Holography/ 56
3.2Wave-Optics Analysis of Optical Systems/ 65
3.3Optical Processing/ 71
Unit 4 Electromagnetic Fields and Electromagnetic Waves/ 77
4.1The Concept of Electromagnetic Fields and Waves/ 77
4.2The History of Electromagnetic Waves/ 78
4.3The Basic Laws of Electromagnetic Theory/ 80
4.4The Properties of Electromagnetic Waves/ 89
4.5Electromagnetic Spectra and Applications/ 91
Unit 5 Lasers/ 97
5.1Amplification of Light/ 97
5.2Optical Resonators/ 98
5.3Laser Amplifiers/ 104
5.4Laser Techniques/ 109
5.5Laser Applications/ 114
Unit 6 Optical Fiber Communication/ 124
6.1The Development of Optical Communication Systems/ 124
6.2Optical Fiber Characteristics/ 125
6.3The Propagation of Optical Beam in Fibers/ 129
6.4The Impacts of Fiber Nonlinearities/ 133
6.5All Optical Networks/ 140
Unit 7 Nonlinear Optics/ 149
7.1The Definition of Nonlinear Optics/ 149
7.2The History of Nonlinear Optics/ 151
7.3The Features of Interaction of Intense Light with Matter/ 155
7.4The Theory Framework of Nonlinear Optics/ 158
7.5The Descriptions of Nonlinear Optical Processes/ 160
7.6Applications and Future Perspectives/ 166
Unit 8 Photonic Crystal Fibers/ 171
8.1The Origins of PCFs/ 171
8.2The History of PCFs/ 174
8.3Guiding Light in PCFs/ 174
8.4The Properties of PCFs/ 176
8.5The Fabrication of PCFs/ 179
8.6The Applications of PCFs/ 183
8.7Future Perspectives/ 187
Unit 9 Applied Techniques/ 190
9.1Optical Thin Film Technology/ 190
9.2Photolithography/ 195
9.3Biophotonics/ 199
9.43D Display Technology/ 208
References/ 215
1.1Energy Bands and Carrier Concentration/ 1
1.2Carrier Transport Phenomena/ 8
1.3PN Junction/ 14
Unit 2 Semiconductor Devices/ 25
2.1Bipolar Junction Transistors/ 25
2.2The MOSFET/ 38
2.3Microwave and Photonic Devices/ 51
Unit 3 Holography and Fourier Optics/ 56
3.1Holography/ 56
3.2Wave-Optics Analysis of Optical Systems/ 65
3.3Optical Processing/ 71
Unit 4 Electromagnetic Fields and Electromagnetic Waves/ 77
4.1The Concept of Electromagnetic Fields and Waves/ 77
4.2The History of Electromagnetic Waves/ 78
4.3The Basic Laws of Electromagnetic Theory/ 80
4.4The Properties of Electromagnetic Waves/ 89
4.5Electromagnetic Spectra and Applications/ 91
Unit 5 Lasers/ 97
5.1Amplification of Light/ 97
5.2Optical Resonators/ 98
5.3Laser Amplifiers/ 104
5.4Laser Techniques/ 109
5.5Laser Applications/ 114
Unit 6 Optical Fiber Communication/ 124
6.1The Development of Optical Communication Systems/ 124
6.2Optical Fiber Characteristics/ 125
6.3The Propagation of Optical Beam in Fibers/ 129
6.4The Impacts of Fiber Nonlinearities/ 133
6.5All Optical Networks/ 140
Unit 7 Nonlinear Optics/ 149
7.1The Definition of Nonlinear Optics/ 149
7.2The History of Nonlinear Optics/ 151
7.3The Features of Interaction of Intense Light with Matter/ 155
7.4The Theory Framework of Nonlinear Optics/ 158
7.5The Descriptions of Nonlinear Optical Processes/ 160
7.6Applications and Future Perspectives/ 166
Unit 8 Photonic Crystal Fibers/ 171
8.1The Origins of PCFs/ 171
8.2The History of PCFs/ 174
8.3Guiding Light in PCFs/ 174
8.4The Properties of PCFs/ 176
8.5The Fabrication of PCFs/ 179
8.6The Applications of PCFs/ 183
8.7Future Perspectives/ 187
Unit 9 Applied Techniques/ 190
9.1Optical Thin Film Technology/ 190
9.2Photolithography/ 195
9.3Biophotonics/ 199
9.43D Display Technology/ 208
References/ 215
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