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Titlebook: Coherent Lightwave Communications Technology; Sadakuni Shimada (Board Director) Book 1995 Springer Science+Business Media Dordrecht 1995 c

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书目名称Coherent Lightwave Communications Technology
编辑Sadakuni Shimada (Board Director)
视频videohttp://file.papertrans.cn/230/229209/229209.mp4
丛书名称Telecommunications Technology & Applications Series
图书封面Titlebook: Coherent Lightwave Communications Technology;  Sadakuni Shimada (Board Director) Book 1995 Springer Science+Business Media Dordrecht 1995 c
描述This book covers a wide range of technical issues relating to lightwave technologies using high coherence lightwaves. Electromagnetic wave communication started when the first wireless system was invented by Marconi in 1895. However, we had to wait about one hundred years to realize a similar technology in the lightwave frequency region. The invention of lasers in 1960 and two technology innovations in 1970 -low loss silica fiber and semiconductor lasers operating at room temperature - promoted the development of fiber-optic transmission systems. The deployment of high-speed long-haul fiber-optic transmission systems has led to the formation of domestic and international trunk networks. The installed fiber cables in local loop plants provide multimedia communication services including broadband video. However, present lightwave communication systems do not fully utilize the fruitful potential oflightwaves, namely the capacity of extremely high frequency electromagnetic information carrier waves. The frequency oflightwaves used for fiber-optic transmission is about 200 THz 14 (2 x 10 Hz), and the frequency bandwidth of the fiber low loss region is about 13 20 THz (2 x 10 Hz). Recent
出版日期Book 1995
关键词communication; communication systems; detection; development; filters; laser; transmission
版次1
doihttps://doi.org/10.1007/978-94-011-1308-3
isbn_softcover978-0-412-57940-0
isbn_ebook978-94-011-1308-3
copyrightSpringer Science+Business Media Dordrecht 1995
The information of publication is updating

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Optical amplifiers for coherent transmission and optical FDM,id not confirm their practical application in the communications field. Around 1970, the first continuous oscillation of laser diodes (LDs) at room temperature was achieved. The initial development of optical devices as light sources in communications focused on LDs. From the mid 1980s, research int
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https://doi.org/10.1007/978-1-137-59261-3ans optical heterodyne and homodyne detection, offers receiver sensitivity improvement (Yamamato, 1980 and Okashi, ., 1981) and frequency selectivity improvement. The first advantage will significantly affect long repeater span transmission systems and the second advantage will affect optical freque
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https://doi.org/10.1007/978-3-030-78431-7iodes are the most promising for practical transmission systems because of their compactness and reliability. However, the main problem is spectral linewidth (determined by phase noise). The spectral linewidth of oscillators for a radio communication system is less than 1 Hz. Therefore, the spectral
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