Ultrahigh-Speed Optical Transmission TechnologyHans-Georg Weber, Masataka Nakazawa Springer Science & Business Media, 28 dic 2007 - 482 páginas This book is a detailed description of all the aspects of ultrahigh speed optical transmission technology. Ultrahigh-speed optical transmission technology is a key technology for increasing communication capacity. The devices developed for ultrahigh-speed optical transmission are not limited to communication applications only. They are key devices for high-speed optical signal processing, i.e. monitoring, measurement and control, and will thus give a wide technological basis for innovative science and technology. All these aspects of ultrahigh-speed optical transmission technology are described in detail in this book. |
Índice
1 | |
21 | |
Ultrafast modelocked fiber lasers for highspeed OTDM transmission | 53 |
Ultrahighspeed LiNbO3 modulators 89 | 88 |
Highspeed optical signal processing using semiconductor optical amplifiers | 103 |
Optical signal processing using nonlinear fibers | 141 |
Ultrafast photodetectors and receivers | 165 |
Contents | 174 |
Optical fibers and fiber dispersion compensators | 250 |
Fiber Bragg gratings for dispersion compensation | 277 |
Higherorder dispersion compensation using phase modulators 301 | 300 |
PMDcompensation techniques | 346 |
Ultrafast OTDM transmission using novel fiber devices | 378 |
Ultrafast optical technologies for largecapacity TDMWDM | 397 |
New optical device technologies for ultrafast OTDM systems 425 | 417 |
Optical sampling techniques | 453 |
Otras ediciones - Ver todo
Ultrahigh-Speed Optical Transmission Technology Hans-Georg Weber,Masataka Nakazawa No hay ninguna vista previa disponible - 2007 |
Ultrahigh-Speed Optical Transmission Technology Hans-Georg Weber,Masataka Nakazawa No hay ninguna vista previa disponible - 2010 |
Términos y frases comunes
absorption achieved all-optical amplifier amplitude applications band bandwidth bit rate carrier cavity channel characteristics clock Communication compensation components configuration conversion data signal delay demonstrated demultiplexing dependence described devices dispersion dispersion compensation effect electrical Electron energy erbium example experiment Figure filter frequency gain gate Gbit/s grating high-speed higher increase input integrated jitter laser layer length Lett light limited loop loss measured mode mode-locked mode-locked laser modulation multiplexing noise nonlinear obtained operation optical fiber optical sampling OTDM output performance phase phase modulation photodiode polarization processing pulse width quantum range ratio receiver recovery reduced regeneration repetition respectively response sampling system semiconductor shift shown in Fig shows single spectral spectrum structure switching technique Technol transmission transmitter ultrafast values wave waveguide wavelength