Presentation 2013-10-25
Characterizations of TE mode semiconductor optical isolators for unidirectional semiconductor ring lasers
Shohei SAKANISHI, Takahiro BANDO, Hiromasa SHIMIZU,
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Abstract(in English) Semiconductor optical isolators are monolithically integrable waveguide optical isolators based on transverse magneto-optic Kerr effect at the boundary of the ferromagnetic metal and waveguide. They can be applied to optical filp-flop memory by the self-feedback light and optical injection locking in unidirectional semiconductor ring lasers (SRLs) integrated with semiconductor optical isolators. We are aiming to realize SRLs with small radius having transverse electric (TE) mode high-mesa waveguide type semiconductor optical isolators in order to realize a radius of unidirectional SRLs smaller than 100 um and extinction ratio of 0.5 dB in 100 um -long optical isolator region. We have designed the structures of TE mode semiconductor optical isolator. Furthermore we fabricated the designed semiconductor optical isolators based on passive waveguides and evaluated the propagation loss and extinction ratio.
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Keyword(in English) Semiconductor optical isolator / Semiconductor ring laser / Ferromagnetic metal / Optical flip-flop memory
Paper # OCS2013-65,OPE2013-111,LQE2013-81
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Conference Information
Committee OCS
Conference Date 2013/10/17(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
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Title (in English) Characterizations of TE mode semiconductor optical isolators for unidirectional semiconductor ring lasers
Sub Title (in English)
Keyword(1) Semiconductor optical isolator
Keyword(2) Semiconductor ring laser
Keyword(3) Ferromagnetic metal
Keyword(4) Optical flip-flop memory
1st Author's Name Shohei SAKANISHI
1st Author's Affiliation Tokyo University of Agriculture and Technology()
2nd Author's Name Takahiro BANDO
2nd Author's Affiliation Tokyo University of Agriculture and Technology
3rd Author's Name Hiromasa SHIMIZU
3rd Author's Affiliation Tokyo University of Agriculture and Technology
Date 2013-10-25
Paper # OCS2013-65,OPE2013-111,LQE2013-81
Volume (vol) vol.113
Number (no) 262
Page pp.pp.-
#Pages 4
Date of Issue