Presentation 2013-10-25
Demonstration of Resonance Frequency Enhancement Effect by Using Split Pumping Region in Active Multi-mode nterferometer Laser Diode
Mohammad Nasir UDDIN, Takaaki KIZU, Yasuhiro HINOKUMA, Akio TAJIMA, Kazutoshi KATO, Kiichi HAMAMOTO,
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Abstract(in English) Laser diode capable of high speed direct modulation is one of the key solution for short distance applications. One promising approach to enhance the modulation speed is to increase the photon density to achieve high modulation bandwidth. The modulation bandwidth is an important issue and that needs much attention for short distance direct modulation application. So to achieve this target, the split pumping concept has been applied for the active multi-mode interferometer laser diode (active MMI LD) and significant enhancement of 3 dB bandwidth up to 8 GHz from 2.3 GHz due to the enhancement of resonance frequency has been successfully confirmed.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Active-MMI LD / Resonance frequency enhancement / Split pumping section
Paper # OCS2013-75,OPE2013-121,LQE2013-91
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Conference Information
Committee LQE
Conference Date 2013/10/17(1days)
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Registration To Lasers and Quantum Electronics (LQE)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Demonstration of Resonance Frequency Enhancement Effect by Using Split Pumping Region in Active Multi-mode nterferometer Laser Diode
Sub Title (in English)
Keyword(1) Active-MMI LD
Keyword(2) Resonance frequency enhancement
Keyword(3) Split pumping section
1st Author's Name Mohammad Nasir UDDIN
1st Author's Affiliation Interdisciplinary Graduate School of Engineering Sciences (I-EggS), Kyushu University()
2nd Author's Name Takaaki KIZU
2nd Author's Affiliation Interdisciplinary Graduate School of Engineering Sciences (I-EggS), Kyushu University
3rd Author's Name Yasuhiro HINOKUMA
3rd Author's Affiliation Interdisciplinary Graduate School of Engineering Sciences (I-EggS), Kyushu University
4th Author's Name Akio TAJIMA
4th Author's Affiliation Green Platform Research Laboratories, NEC Corporation
5th Author's Name Kazutoshi KATO
5th Author's Affiliation Gradiate School of Information Science and Electrical Engineering, Kyushu Unversiyt
6th Author's Name Kiichi HAMAMOTO
6th Author's Affiliation Interdisciplinary Graduate School of Engineering Sciences (I-EggS), Kyushu University
Date 2013-10-25
Paper # OCS2013-75,OPE2013-121,LQE2013-91
Volume (vol) vol.113
Number (no) 264
Page pp.pp.-
#Pages 4
Date of Issue