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Simulation of mode-locking by nonlinear polarization rotation in a semiconductor optical amplifier

Authors :
Li, Z.
Yang, X.
Tangdiongga, E.
Ju, H.
Khoe, G.D.
Dorren, H.J.S.
Lenstra, D.
Li, Z.
Yang, X.
Tangdiongga, E.
Ju, H.
Khoe, G.D.
Dorren, H.J.S.
Lenstra, D.
Source :
IEEE Journal of Quantum Electronics vol.41 (2005) nr.6 p.808-816 [ISSN 0018-9197]
Publication Year :
2005

Abstract

We present a theoretical investigation of a mode locked laser that has a semiconductor optical amplifier (SOA) in its ring cavity. A mode-locked train of narrow pulses is obtained by combining nonlinear polarization rotation in the SOA and a polarization filter whose polarization axis is set such that the tail of optical pulses is removed in each cavity round-trip. The pulse narrowing process is demonstrated numerically and good qualitative agreement with experiments in our previous work is achieved. The pulse performance is largely determined by the ultrafast SOA gain dynamics and the cavity dispersion. Our simulation shows that the laser can produce a pulse train of subpicosecond pulsewidth at a repetition rate of 28 GHz for a moderate SOA current level. We observe that the laser can switch itself on or off depending on the initial pulse.

Details

Database :
OAIster
Journal :
IEEE Journal of Quantum Electronics vol.41 (2005) nr.6 p.808-816 [ISSN 0018-9197]
Notes :
Li, Z.
Publication Type :
Electronic Resource
Accession number :
edsoai.on1028691599
Document Type :
Electronic Resource