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Phase recovery acceleration of quantum-dot semiconductor optical amplifiers by optical pumping to quantum-well wetting layer

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3 Citations (Scopus)

Abstract

We theoretically investigate the phase recovery acceleration of quantum-dot (QD) semiconductor optical amplifiers (SOAs) by means of the optical pump injection to the quantum-well (QW) wetting layer (WL). We compare the ultrafast gain and phase recovery responses of QD SOAs in either the electrical or the optical pumping scheme by numerically solving 1088 coupled rate equations. The ultrafast gain recovery responses on the order of sub-picosecond are nearly the same for the two pumping schemes. The ultrafast phase recovery is not significantly accelerated by increasing the electrical current density, but greatly improved by increasing the optical pumping power to the QW WL. Because the phase recovery time of QD SOAs with the optical pumping scheme can be reduced down to several picoseconds, the complete phase recovery can be achieved when consecutive pulse signals with a repetition rate of 100 GHz is injected.

Original languageEnglish
Article number112101
JournalJapanese Journal of Applied Physics
Volume52
Issue number11 PART 1
DOIs
Publication statusPublished - Nov 2013

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