Proceedings of SPIE- The international society for Optical Engineering Volume 716·High Frequency Optical 🔍
O.Glenn Ramer(Editors); Paul Sierak(Editors)
the Society of Photo-Optical Instrumentation Engineers·Washington, Proceedings of SPIE--the International Society for Optical Engineering ;, v. 716, Bellingham, Wash., USA, Washington State, 1987
英语 [en] · PDF · 11.9MB · 1987 · 📗 未知类型的图书 · 🚀/duxiu/ia · Save
描述
fiber-optic systems have been emerging as a distinct discipline within fiber-optics bechnology over the
High frequency analog fiber-optic systems have been emerging as a distinct discipline within fiber-optics bechnology over the past several years.
High frequency analog fiber-optic systems have been emerging as a distinct discipline within fiber-optics bechnology over the past several years.
备选标题
High Frequency Optical Communications, September 23-24, 1987, Cambridge, Massachusetts (Proceedings of Spie-Intl Soc Optical Engn, Volume 716)
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High frequency optical communications : conference, Cambridge, Sept. 1986, proceedings, chairs/eds : O.G. Ramer and P. Sierak
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Proceedings of SPIE-The international society for Optical Engineering Volume 716·High Frequency Optical Communications
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High frequency optical communications : [proceedings] : 23-24 September 1986, Cambridge, Massachusetts
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8 April 1985, Arlington, Virginia, 1 - 2 April 1986, Orlando, Florida
备选标题
Infrared, adaptive, and synthetic aperture optical systems
备选作者
O. Glenn Ramer; Paul Sierak; Society of Photo-optical Instrumentation Engineers; University of Alabama in Huntsville Center for Applied Optics; Fiber Optics, Optoelectronics and Laser Applications in Science and Engineering Symposium
备选作者
O. Glenn Ramer, Paul Sierak, chairs/editors; sponsored by SPIE--the International Society for Optical Engineering; cooperating organizations, Center for Applied Optics/University of Alabama in Huntsville ... [et al.]
备选作者
O. Glenn Ramer; Paul Sierak; Society of Photo-optical Instrumentation Engineers (U.S.); University of Alabama in Huntsville Center for Applied Optics
备选作者
Ramer, O. Glenn; Sierak, Paul; Society of Photo-optical Instrumentation Engineers; University of Alabama in Huntsville. Center for Applied Optics
备选作者
Paul Sierak, Paul O. Glenn&Sierak Ramer
备选作者
R. B. Johnson
备用出版商
SPIE - The International Society for Optical Engineering
备用出版商
Bellingham, Wash., USA: The Society
备用出版商
Society of Photo Optical
备用出版商
SPIE Press
备用版本
Proceedings of SPIE--the International Society for Optical Engineering, v. 716 ^A245801 ^A245801, Bellingham, Wash, 1987
备用版本
Proceedings of SPIE - The International Society for Optical Engineering, Bellingham, 1987
备用版本
United States, United States of America
备用版本
Volume 716, 1987
备用版本
September 1987
备用版本
9/28/1986
元数据中的注释
text runs into the gutter, cut text due to tight binding
Inherent tight margin
Inherent tight margin
元数据中的注释
Includes bibliographies and index.
元数据中的注释
contributor: 浙江大学
元数据中的注释
format: Image/Djvu(.djvu)
元数据中的注释
unit_name: 浙江大学
元数据中的注释
Type: 英文图书
元数据中的注释
Bookmarks:
1. (p1) Session 1 Systems And Applications-A
1.1. (p2) RF fiber optic links for avionics applications
1.2. (p11) Coherent fiber optics
1.3. (p23) Fiber optics and optoelectronics for radar and electronic warfare applications
1.4. (p32) High speed optical interconnect development
2. (p41) Session 2 Integrated Optical Devices
2.1. (p42) Symmetric coplanar electrodes for high speed Ti:LiNbO_3 devices
2.2. (p48) A modified 1x2 directional coupler modulator with low drive voltage
2.3. (p53) 1.3 um traveling wave interferometer modulator for instrument applications
2.4. (p58) Surface wave electro-optic modulator
3. (p63) Session 3 Systems And Applications-B
3.1. (p64) X-band rf fiber optic links
3.2. (p69) Fiber-optic links for microwave signal transmission
3.3. (p76) Fundamental gain/bandwidth limitations in high frequency fiber-optic links
3.4. (p82) Cascaded single-mode fiber-optic transversal filters
3.5. (p88) GaAs monolithic receiver and laser driver for GHz transmission rates
4. (p95) Session 4 Detectors
4.1. (p96) Picosecond response high-speed GaAs Schottky barrier photodetector for microwave optical fiber links
4.2. (p104) Monolithically integrable high speed photodetectors
4.3. (p109) Heterojunction waveguide photodetectors
5. (p115) Session 5 Sources
5.1. (p116) Irregular and chaotic behavior of semiconductor lasers under modulation
5.2. (p120) Analysis of low loss impedance matched fiber-optic transceivers for microwave signal transmission
5.3. (p126) A high frequency laser package for microwave optical communications
5.4. (p131) GaAs 8:1 multiplexer and 1:8 demultiplexer chip set for high speed transmission of television and digita data
6. (p139) Session 6 Coherent Communications
6.1. (p140) Coherent fiber-optic transmission systems:potentials and problems
6.2. (p148) Receiver modeling for coherent lightwave communications
6.2.1. (p153) Performance requirements for devices and components for field application of coherent optical communication systems
6.3. (p162) Polarization sensors and controllers for coherent optical communication systems
1. (p1) Session 1 Systems And Applications-A
1.1. (p2) RF fiber optic links for avionics applications
1.2. (p11) Coherent fiber optics
1.3. (p23) Fiber optics and optoelectronics for radar and electronic warfare applications
1.4. (p32) High speed optical interconnect development
2. (p41) Session 2 Integrated Optical Devices
2.1. (p42) Symmetric coplanar electrodes for high speed Ti:LiNbO_3 devices
2.2. (p48) A modified 1x2 directional coupler modulator with low drive voltage
2.3. (p53) 1.3 um traveling wave interferometer modulator for instrument applications
2.4. (p58) Surface wave electro-optic modulator
3. (p63) Session 3 Systems And Applications-B
3.1. (p64) X-band rf fiber optic links
3.2. (p69) Fiber-optic links for microwave signal transmission
3.3. (p76) Fundamental gain/bandwidth limitations in high frequency fiber-optic links
3.4. (p82) Cascaded single-mode fiber-optic transversal filters
3.5. (p88) GaAs monolithic receiver and laser driver for GHz transmission rates
4. (p95) Session 4 Detectors
4.1. (p96) Picosecond response high-speed GaAs Schottky barrier photodetector for microwave optical fiber links
4.2. (p104) Monolithically integrable high speed photodetectors
4.3. (p109) Heterojunction waveguide photodetectors
5. (p115) Session 5 Sources
5.1. (p116) Irregular and chaotic behavior of semiconductor lasers under modulation
5.2. (p120) Analysis of low loss impedance matched fiber-optic transceivers for microwave signal transmission
5.3. (p126) A high frequency laser package for microwave optical communications
5.4. (p131) GaAs 8:1 multiplexer and 1:8 demultiplexer chip set for high speed transmission of television and digita data
6. (p139) Session 6 Coherent Communications
6.1. (p140) Coherent fiber-optic transmission systems:potentials and problems
6.2. (p148) Receiver modeling for coherent lightwave communications
6.2.1. (p153) Performance requirements for devices and components for field application of coherent optical communication systems
6.3. (p162) Polarization sensors and controllers for coherent optical communication systems
备用描述
vi, 166 p. : 28 cm
Includes bibliographies and index
Includes bibliographies and index
开源日期
2024-07-01
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