The authors investigate the propagation of picosecond pulses through semiconductor optical amplifiers using the measurement technique of frequency resolved optical gating. The work shows the generation of significant pulse pedestals and frequency chirp across the optical pulses, which initially have a duration of 2 ps. As the input peak power of the optical pulses is increased from 2.4 to 80 mW, the pulse pedestals increased by 20 dB and the chirp became significantly more nonlinear. The generated pedestals and the nonlinear output chirp may cause serious degradation in high-speed communications systems employing wavelength-division-multiplexing and optical time-division-multiplexing techniques
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
This work presents the generation of 3.5 ps pulses at a repetition rate of 10 GHz and the optimizati...
This work presents the generation of 3.5 ps pulses at a repetition rate of 10 GHz and the optimizati...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
peer-reviewedThe authors investigate the propagation of picosecond pulses through semiconductor opti...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
A numerical analysis, based on a modified Schrodinger equation, of the formation of pulse pedestals ...
A numerical analysis, based on a modified Schrodinger equation, of the formation of pulse pedestals ...
A numerical analysis, based on a modified Schrodinger equation, of the formation of pulse pedestals ...
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
This work presents the generation of 3.5 ps pulses at a repetition rate of 10 GHz and the optimizati...
This work presents the generation of 3.5 ps pulses at a repetition rate of 10 GHz and the optimizati...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
peer-reviewedThe authors investigate the propagation of picosecond pulses through semiconductor opti...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
The authors investigate the propagation of picosecond pulses through semiconductor optical amplifier...
A numerical analysis, based on a modified Schrodinger equation, of the formation of pulse pedestals ...
A numerical analysis, based on a modified Schrodinger equation, of the formation of pulse pedestals ...
A numerical analysis, based on a modified Schrodinger equation, of the formation of pulse pedestals ...
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
Experimental results are presented demonstrating how four-wave mixing in a semiconductor optical amp...
This work presents the generation of 3.5 ps pulses at a repetition rate of 10 GHz and the optimizati...
This work presents the generation of 3.5 ps pulses at a repetition rate of 10 GHz and the optimizati...