Presentation 2011-01-28
Hole-assisted Dual Concentric Core Fiber with Ultra Large Negative Dispersion Coefficient of -13200 ps/nm/km
Taiji SAKAMOTO, Takashi MATSUI, Kyozo TSUJIKAWA, Shigeru TOMITA,
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Abstract(in English) Dispersion compensating fibers (DCFs) are widely used in today's optical fiber communication systems. They are indispensable to long-haul systems transmitting at high bit rates of more than 40 Gb/s. These systems require DCFs with a low insertion loss and a large negative dispersion coefficient to compensate effectively for the dispersion of the signals. In this paper, we propose a dual concentric core fiber (DCCF) with six homogeneous air holes, designed to realize a large negative dispersion coefficient. We clarify numerically that the dispersion property of the proposed DCCF can be controlled flexibly by adjusting the air-hole structure, and we realize the largest reported negative dispersion of -13200ps/nm/km experimentally.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Dual concentric core fiber / delay line / dispersion / wavelength conversion
Paper # OFT2010-58
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Committee OFT
Conference Date 2011/1/20(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) Hole-assisted Dual Concentric Core Fiber with Ultra Large Negative Dispersion Coefficient of -13200 ps/nm/km
Sub Title (in English)
Keyword(1) Dual concentric core fiber
Keyword(2) delay line
Keyword(3) dispersion
Keyword(4) wavelength conversion
1st Author's Name Taiji SAKAMOTO
1st Author's Affiliation NTT Access Network Service Systems Laboratories, NTT Corporation()
2nd Author's Name Takashi MATSUI
2nd Author's Affiliation NTT Access Network Service Systems Laboratories, NTT Corporation
3rd Author's Name Kyozo TSUJIKAWA
3rd Author's Affiliation NTT Access Network Service Systems Laboratories, NTT Corporation
4th Author's Name Shigeru TOMITA
4th Author's Affiliation NTT Access Network Service Systems Laboratories, NTT Corporation
Date 2011-01-28
Paper # OFT2010-58
Volume (vol) vol.110
Number (no) 397
Page pp.pp.-
#Pages 5
Date of Issue