Optical Fiber CommunicationsThe third edition of this popular text and reference book presents the fundamental principles for understanding and applying optical fiber technology to sophisticated modern telecommunication systems.. Optical-fiber-based telecommunication networks have become a major information-transmission-system, with high capacity links encircling the globe in both terrestrial and undersea installations. Numerous passive and active optical devices within these links perform complex transmission and networking functions in the optical domain, such as signal amplification, restoration, routing, and switching. Along with the need to understand the functions of these devices comes the necessity to measure both component and network performance, and to model and stimulate the complex behavior of reliable high-capacity networks. |
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Page 146
We shall discuss the fundamental characteristics of these two device types in the
following sections . In describing these devices we shall make use of some
elementary principles of semiconductor device physics . A review of these
principles ...
We shall discuss the fundamental characteristics of these two device types in the
following sections . In describing these devices we shall make use of some
elementary principles of semiconductor device physics . A review of these
principles ...
Page 222
Input channel channel - Source , - Source λι Detector de Output channel Single
fiber WDM device WDM device Output channel Detector channel - Detector
Source 12 Input channel Figure 8 - 8 Schematic representation of a bidirectional
WDM ...
Input channel channel - Source , - Source λι Detector de Output channel Single
fiber WDM device WDM device Output channel Detector channel - Detector
Source 12 Input channel Figure 8 - 8 Schematic representation of a bidirectional
WDM ...
Page 223
Many wavelengths can be combined or separated with this type of device . filter -
based devices , 27 - 31 such as multilayer thin - film interference filters or
singlemode integrated - optical devices . The basis of an angularly dispersive ...
Many wavelengths can be combined or separated with this type of device . filter -
based devices , 27 - 31 such as multilayer thin - film interference filters or
singlemode integrated - optical devices . The basis of an angularly dispersive ...
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Contents
Signal Degradation in Optical Fibers | 3 |
Structures and Waveguiding | 12 |
Optical Sources | 59 |
Copyright | |
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absorption active addition amplifier angle applications approximately assume attenuation avalanche band bandwidth becomes bias cable carrier channel characteristics cladding communication components condition consider constant core coupling defined density depends detector determined device dispersion distance distortion effects efficiency electric Electron emitting energy equal equation example expression factor fiber optic field Figure frequency function gain given gives glass guided IEEE important increases input laser diodes length less light limit loss material measured mechanical method modes modulation noise occurs operating optical fiber optical power optical source output parameter photodetector photodiode photon propagation pulse quantum range ratio receiver referred reflection refractive region response rise shown in Fig signal spectral surface technique temperature transmission transmitter types values various voltage wave waveguide wavelength width York