Presentation 2013-05-24
Optical power delivery technique using single-mode optical fiber
Lin Ma, Kyozo Tsujikawa, Nobutomo Hanzawa, Fumihiko Yamamoto,
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Abstract(in English) We investigated the limit of optical power delivery (OPD) using single-mode optical fibers (SMF) both theoretically and experimentally. We employed a C-band amplified spontaneous emission (ASE) source pumped by a high power erbium-doped fiber-optical amplifier (EDFA) as broadband light source. As a result, the nonlinear effect caused by stimulated Brillouin scattering (SBS) was suppressed by 2 orders of magnitude to a value comparable with that of stimulated Raman scattering (SRS). By using this technique, we succeeded in delivery 3.5 W of optical power over a 5 km-long SMF. Moreover, we used commercially available photovoltaic cells to converse optical power into electric power and we obtained a conversion efficiency of 17.4%. Using this technique, large expansion on the application range of OPD can be expected.
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Keyword(in English) Single-mode fiber / Optical power delivery / Stimulated Brillouin scattering / Stimulated Raman scattering
Paper # OFT2013-11
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Conference Information
Committee OFT
Conference Date 2013/5/16(1days)
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Registration To Optical Fiber Technology (OFT)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Optical power delivery technique using single-mode optical fiber
Sub Title (in English)
Keyword(1) Single-mode fiber
Keyword(2) Optical power delivery
Keyword(3) Stimulated Brillouin scattering
Keyword(4) Stimulated Raman scattering
1st Author's Name Lin Ma
1st Author's Affiliation NTT Access Network Service Systems Laboratories()
2nd Author's Name Kyozo Tsujikawa
2nd Author's Affiliation NTT Access Network Service Systems Laboratories
3rd Author's Name Nobutomo Hanzawa
3rd Author's Affiliation NTT Access Network Service Systems Laboratories
4th Author's Name Fumihiko Yamamoto
4th Author's Affiliation NTT Access Network Service Systems Laboratories
Date 2013-05-24
Paper # OFT2013-11
Volume (vol) vol.113
Number (no) 55
Page pp.pp.-
#Pages 4
Date of Issue