We present a linear self-referenced measurement of the spectral amplitude and phase of a free-running quantum-dash modelocked laser diode. The technique is suitable for measuring optical signals with repetition rates up to 100 GHz. In contrast to many other linear techniques it requires no external electronic clock synchronized to the signal under test. Using this method we are able to compensate for the intracavity dispersion of the diode to demonstrate 500 fs pulses at a repetition rate of 39.8 GHz. We also use the technique to characterize the dependence of the diode’s intracavity dispersion on the applied current
An experimental study of the dynamics of a quantum-dash Fabry-Pérot passively mode-locked laser dio...
Linewidth narrowing of the radio frequency beat-tones and the optical-modes is experimentally invest...
International audienceA quantum dash Fabry-Perot actively modelocked laser module is tested as part ...
We present a linear self-referenced measurement of the spectral amplitude and phase of a free-runnin...
Device characterization of Quantum-Dash semiconductor mode-locked laser using a continuous tuning sw...
This PhD thesis deals with the integration of InP based quantum dash mode locked lasers for use in o...
Beat-tones at 40-GHz from a QDash-ML laser under 10 to 160 Gb/s optical injection are analyzed. A FW...
Wavelength tunability of an all-optical clock recovery operation based on a quantum dash mode-locked...
Optical pulses at a repetition rate of 39.8 GHz have been observed in a dc-biased passively mode-lo...
Synchronization of a 40 GHz quantum-dash mode-locked (ML) Fabry–Perot laser diode with optically inj...
We measure, simultaneously, the phases of a large set of comb lines from a passively mode locked, In...
An experimental analysis of the timing jitter associated with sub-picosecond pulses produced from a ...
An experimental study of the dynamics of a quantum-dash Fabry-Pérot passively mode-locked laser dio...
Linewidth narrowing of the radio frequency beat-tones and the optical-modes is experimentally invest...
International audienceA quantum dash Fabry-Perot actively modelocked laser module is tested as part ...
We present a linear self-referenced measurement of the spectral amplitude and phase of a free-runnin...
Device characterization of Quantum-Dash semiconductor mode-locked laser using a continuous tuning sw...
This PhD thesis deals with the integration of InP based quantum dash mode locked lasers for use in o...
Beat-tones at 40-GHz from a QDash-ML laser under 10 to 160 Gb/s optical injection are analyzed. A FW...
Wavelength tunability of an all-optical clock recovery operation based on a quantum dash mode-locked...
Optical pulses at a repetition rate of 39.8 GHz have been observed in a dc-biased passively mode-lo...
Synchronization of a 40 GHz quantum-dash mode-locked (ML) Fabry–Perot laser diode with optically inj...
We measure, simultaneously, the phases of a large set of comb lines from a passively mode locked, In...
An experimental analysis of the timing jitter associated with sub-picosecond pulses produced from a ...
An experimental study of the dynamics of a quantum-dash Fabry-Pérot passively mode-locked laser dio...
Linewidth narrowing of the radio frequency beat-tones and the optical-modes is experimentally invest...
International audienceA quantum dash Fabry-Perot actively modelocked laser module is tested as part ...