Please use this identifier to cite or link to this item: http://dspace.aiub.edu:8080/jspui/handle/123456789/1073
Title: Split pump region in 1.55 μm InGaAsP/InGaAsP asymmetric active multi-mode interferometer laser diode for improved modulation bandwidth
Authors: Uddin, Mohammad Nasir
Kizu, Takaaki
Hinokuma, Yasuhiro
Tanabe, Kazuhiro
Tajima, Akio
Kato, Kazutoshi
Hamamoto, Kiichi
Keywords: Active multimode interferometer laser diode,
Modulation frequency enhancement, Split pumping section, Semiconductor laser diode, Multiple quantum well (MQW) laser diode
Issue Date: Jan-2014
Publisher: IEICE-JAPAN
Citation: Mohammad NASIR UDDIN, Takaaki KIZU, Yasuhiro HINOKUMA, Kazuhiro TANABE, Akio TAJIMA, Kazutoshi KATO, Kiichi HAMAMOTO, “Split pump region in 1.55 μm InGaAsP/InGaAsP asymmetric active multi-mode interferometer laser diode for improved modulation bandwidth,” IEICE Transactions on Electronics, vol. E97.C, no. 7, pp. 781–786, Jan. 2014, doi: https://doi.org/10.1587/transele.e97.c.781. (Web of Science, ISI Indexed, Scopus, IF 0.523)
Series/Report no.: vol. E97.C;no. 7
Abstract: Laser diode capable of high speed direct modulation is one of the key solution for short distance applications due to their low power consumption, low cost and small size features. Realization of high modulation bandwidth for direct modulated laser maintaining the above mentioned feature is needed to enhance the short distance, low cost data transmission. One promising approach to enhance the modulation speed is to increase the photon density to achieve high modulation bandwidth. So to achieve this target, 1.55 μm InGaAsP/InGaAsP multiple quantum well (MQW) asymmetric active multimode interferometer laser diode (active MMI-LD) has been demonstrated [1]. The split pumping concept has been applied for the active MMI-LD and significant enhancement of electrical to optical 3 dB down frequency bandwidth (f3dB) up to 8 GHz has been successfully confirmed. The reported high bandwidth for split pump active MMI-LD is around 3.5 times higher than the previously reported maximum 3 dB bandwidth (2.3 GHz) of active MMI-LD without split pumping section. That shows, the splitted multimode pumping section behind the electrically isolated modulation section can potentially improve the modulation bandwidth of active MMI-LD. Clear and open eye diagram had also been confirmed for 2.5 Gbps, (27-1) pseudo random bit sequence (PRBS) modulation.
URI: http://dspace.aiub.edu:8080/jspui/handle/123456789/1073
ISSN: e-ISSN 1745-1353
p-ISSN 0916-8524
Appears in Collections:Publications From Faculty of Engineering

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