A bidirectional erbium-doped fiber amplifier (Bi-EDFA) has been used in a self-seeding scheme for wavelength-tunable optical short pulse generation. The pulse wavelength is selected and purified by use of two tunable Fabry–Perot (FP) optical filters with bandwidth of 0.11 nm and 99 pm respectively, while a constant repetition frequency of 1.045 GHz is maintained. The sidemode suppression ratio (SMSR) of the output pulses achieved is better than 40 dB over the wavelength tuning range of 33 nm. The system is simple and efficient, and a continuous wavelength tuning can be readily achieved.Department of Electrical EngineeringAuthor name used in this publication: D. N. Wan
In this letter, we show the generation of shorter pulses (∼20 ps) that exhibit side mode suppression...
Author name used in this publication: Dong Ning Wang2004-2005 > Academic research: refereed > Public...
Abstract—The authors demonstrate the generation of nearly transform-limited optical pulses that are ...
Author name used in this publication: D. N. Wang2008-2009 > Academic research: refereed > Publicatio...
Two gain-switched Fabry–Pérot laser diodes have been used in a self-seeding scheme for widely tunabl...
A simple and efficient system for generating wavelength-tunable optical short pulses from a self-see...
A simple self-seeding scheme was demonstrated for tunable dual-wavelength optical short pulse genera...
A simple self-seeding scheme is developed to generate tunable dual-wavelength optical short pulses i...
A simple system that simultaneously supports active mode-locking and self-seeding schemes for wavele...
A simple and robust system is presented to generate wavelength-tunable optical short pulses by use o...
A combined system to support simultaneous two way mutual pulse injection-seeding and active mode-loc...
A mutual pulse injection-seeding scheme is developed to produce wavelength-tunable optical short pul...
Electrically wavelength-tunable optical short pulses are generated from a gain-switched Fabry-Perot ...
Author name used in this publication: Dong-Ning WangAuthor name used in this publication: Weng-Hong ...
A simple system for producing continuous and widely wavelength-tunable optical short pulses in a mut...
In this letter, we show the generation of shorter pulses (∼20 ps) that exhibit side mode suppression...
Author name used in this publication: Dong Ning Wang2004-2005 > Academic research: refereed > Public...
Abstract—The authors demonstrate the generation of nearly transform-limited optical pulses that are ...
Author name used in this publication: D. N. Wang2008-2009 > Academic research: refereed > Publicatio...
Two gain-switched Fabry–Pérot laser diodes have been used in a self-seeding scheme for widely tunabl...
A simple and efficient system for generating wavelength-tunable optical short pulses from a self-see...
A simple self-seeding scheme was demonstrated for tunable dual-wavelength optical short pulse genera...
A simple self-seeding scheme is developed to generate tunable dual-wavelength optical short pulses i...
A simple system that simultaneously supports active mode-locking and self-seeding schemes for wavele...
A simple and robust system is presented to generate wavelength-tunable optical short pulses by use o...
A combined system to support simultaneous two way mutual pulse injection-seeding and active mode-loc...
A mutual pulse injection-seeding scheme is developed to produce wavelength-tunable optical short pul...
Electrically wavelength-tunable optical short pulses are generated from a gain-switched Fabry-Perot ...
Author name used in this publication: Dong-Ning WangAuthor name used in this publication: Weng-Hong ...
A simple system for producing continuous and widely wavelength-tunable optical short pulses in a mut...
In this letter, we show the generation of shorter pulses (∼20 ps) that exhibit side mode suppression...
Author name used in this publication: Dong Ning Wang2004-2005 > Academic research: refereed > Public...
Abstract—The authors demonstrate the generation of nearly transform-limited optical pulses that are ...