Presentation 2006-06-22
10Gbps Free-space Laser Transmission Using Single Mode Fiber Based Technology
Yoshinori ARIMOTO, Kazuhiko WAKAMORI, Toshiji SUZUKI, Mitsuji MATSUMOTO,
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Abstract(in English) The system configuration and the first result of the 10-Gbps free-space laser transmission experiment performed in January 2006 at Waseda University campus are reported. Bidirectional free-space laser beam at 1550nm wavelength have been stably and efficiently coupled into a single mode fiber using fast and accurate fine tracking system which had been developed for a Stratospheric platform test flight experiment. Single mode fiber based transceiver technology is used, such as Er-doped fiber amplifiers for both low noise amplifier at the receiver and the booster amplifier at the transmitter, to improve the sensitivity and the dynamic range of the receiver. Combining these technologies, an error free transmission for more than two hours have been demonstrated at the bit rate of 10Gbps.
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Keyword(in English) free-space laser communication / single mode fiber / atmospheric turbulence / fine tracking / Er-doped fiber amplifier
Paper # IN2006-23
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Committee IN
Conference Date 2006/6/15(1days)
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Registration To Information Networks (IN)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) 10Gbps Free-space Laser Transmission Using Single Mode Fiber Based Technology
Sub Title (in English)
Keyword(1) free-space laser communication
Keyword(2) single mode fiber
Keyword(3) atmospheric turbulence
Keyword(4) fine tracking
Keyword(5) Er-doped fiber amplifier
1st Author's Name Yoshinori ARIMOTO
1st Author's Affiliation National Institute of Information and Communications Technology()
2nd Author's Name Kazuhiko WAKAMORI
2nd Author's Affiliation Hamamatsu Photonics K.K.
3rd Author's Name Toshiji SUZUKI
3rd Author's Affiliation GITS GITI, Waseda University
4th Author's Name Mitsuji MATSUMOTO
4th Author's Affiliation GITS GITI, Waseda University
Date 2006-06-22
Paper # IN2006-23
Volume (vol) vol.106
Number (no) 118
Page pp.pp.-
#Pages 6
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