Presentation 2012-10-25
7-core 2-mode fibers with large Aeff to simultaneously realize "3M"
Kazunori MUKASA, Katsunori IMAMURA, Masataka YASUDA, Ryuichi SUGIZAKI, Takeshi YAGI,
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Abstract(in English) Recently, new technologies such as space division multiplexing, mode division multiplexing, and multi-level signal format are paid great attention which can overcome the limitation in transmission capacity. 2-mode fibers with large Aeff have possibilities to contribute to the enlargement of a transmission capacity by means of mode division multiplexing and multi-level signal format technologies. As for a single-core 2-mode fiber, we performed design optimization to simultaneously realize a large Aeff and low macro bending loss properties and successfully realized a single-core 2-mode fiber with low macro bending loss and large Aeff of 170μm^2 (LP01 mode), and 250μm^2 (LP11 mode). Moreover, to realize larger capacity transmission by combining a space division multiplexing technology, 7-core 2-mode fiber were designed and fabricated. The measured optical properties were confirmed to be as same as the simulated results. As a result, 7-core 2-mode fiber, which has large Aeff properties as same as single-core 2-mode fiber and sufficiently low cross-talks was successfully realized.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) 3M / Aeff / multicore / multimode
Paper # OFT2012-38
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Conference Information
Committee OFT
Conference Date 2012/10/18(1days)
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Paper Information
Registration To Optical Fiber Technology (OFT)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) 7-core 2-mode fibers with large Aeff to simultaneously realize "3M"
Sub Title (in English)
Keyword(1) 3M
Keyword(2) Aeff
Keyword(3) multicore
Keyword(4) multimode
1st Author's Name Kazunori MUKASA
1st Author's Affiliation OFS Laboratories()
2nd Author's Name Katsunori IMAMURA
2nd Author's Affiliation Fitel Photonics laboratory, Furukawa Electric Co., Ltd.
3rd Author's Name Masataka YASUDA
3rd Author's Affiliation Fitel Photonics laboratory, Furukawa Electric Co., Ltd.
4th Author's Name Ryuichi SUGIZAKI
4th Author's Affiliation Fitel Photonics laboratory, Furukawa Electric Co., Ltd.
5th Author's Name Takeshi YAGI
5th Author's Affiliation Fitel Photonics laboratory, Furukawa Electric Co., Ltd.
Date 2012-10-25
Paper # OFT2012-38
Volume (vol) vol.112
Number (no) 261
Page pp.pp.-
#Pages 4
Date of Issue