Presentation 2005-01-26
Characteristic Analysis of Tunable Dispersion Compensator with Double Ring Resonator
Tetsuyuki MOTOMURA, Yoshitaka TOYOTA, Osami WADA, Ryuji KOGA,
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Abstract(in English) All pass filter (APF) with a ring resonator is a prospective optical dispersion compensator since it is small and easily integratable. Double ring type APF consists of two ring resonators with one coupler coupling with two rings, and has single-peak or double-peak group delay characteristics depending on power coupling ratios. It is shown that cascaded double ring type APFs have positive and negative dispersion slopes simultaneously, with the same resonance frequency for every double ring type APF, varying only power coupling ratio.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Tunable dispersion Compensator / Double ring resonator / All pass filter / power coupling ratio / chromatic dispersion / dispersion slope
Paper # PN2004-78,OFT2004-84,OPE2004-185,LQE2004-132
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Committee OPE
Conference Date 2005/1/19(1days)
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Registration To Optoelectronics (OPE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Characteristic Analysis of Tunable Dispersion Compensator with Double Ring Resonator
Sub Title (in English)
Keyword(1) Tunable dispersion Compensator
Keyword(2) Double ring resonator
Keyword(3) All pass filter
Keyword(4) power coupling ratio
Keyword(5) chromatic dispersion
Keyword(6) dispersion slope
1st Author's Name Tetsuyuki MOTOMURA
1st Author's Affiliation Department of Communication Network Engineering, Okayama University()
2nd Author's Name Yoshitaka TOYOTA
2nd Author's Affiliation Department of Communication Network Engineering, Okayama University
3rd Author's Name Osami WADA
3rd Author's Affiliation Department of Communication Network Engineering, Okayama University
4th Author's Name Ryuji KOGA
4th Author's Affiliation Department of Communication Network Engineering, Okayama University
Date 2005-01-26
Paper # PN2004-78,OFT2004-84,OPE2004-185,LQE2004-132
Volume (vol) vol.104
Number (no) 606
Page pp.pp.-
#Pages 4
Date of Issue