1 August 2010Fast and precise control for improved dynamic performance of a sampled grating distributed Bragg reflector laser integrated with semiconductor optical amplifier
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We demonstrate fast power and wavelength control of a monolithic sampled grating distributed Bragg reflector (SGDBR) laser integrated with semiconductor optical amplifier (SOA). Optical power leveling for different channels can be achieved by tuning SOA driving current. Wavelength switching transients are analyzed experimentally. An appropriate shuttering operation of SOA sections during the channel switching process is implemented to eliminate the impact of transient emitting modes, and greatly improved dynamic performance of the SGDBR laser can be observed. With our design, output power of the laser can be precisely controlled within 0.1 dB and rapidly shuttered within 2 ns.
Hui Lv,Yonglin Yu,Dexiu Huang, andTan Shu
"Fast and precise control for improved dynamic performance of a sampled grating distributed Bragg reflector laser integrated with semiconductor optical amplifier," Optical Engineering 49(8), 084201 (1 August 2010). https://doi.org/10.1117/1.3481100
Published: 1 August 2010
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Hui Lv, Yonglin Yu, Dexiu Huang, Tan Shu, "Fast and precise control for improved dynamic performance of a sampled grating distributed Bragg reflector laser integrated with semiconductor optical amplifier," Opt. Eng. 49(8) 084201 (1 August 2010) https://doi.org/10.1117/1.3481100