For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabry-Pérot-type lasers is presented. The output pulses have a typical upchirp of approximately 8 ps/nm, leading to very elongated pulses. The mechanism leading to this typical pulse shape and the phase noise is investigated by detailed radio-frequency and optical spectral studies as well as time-domain studies. The pulse shaping mechanism in these lasers is found to be fundamentally different than the mechanism observed in conventional mode-locked laser diodes, based on quantum well gain or bulk material. ©2009 Optical Society of America
Competing approaches exist, which allow control of phase noise and frequency tuning in mode-locked l...
We report on stable dual-wavelength mode-locking of 3.1GHz and 10GHz two-section InAs/InP(100) quant...
Quantum-dot lasers have shown remarkable properties, such as temperature-insensitive operation, low ...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
For the first time a detailed study of hybrid mode-locking in two-section InAs/InP quantum dot Fabry...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
Hybrid mode-locking in monolithic quantum dot lasers is studied experimentally and theoretically. A ...
We report on stable dual-wavelength mode-locking of 3.1GHz and 10GHz two-section InAs/InP(100) quant...
Competing approaches exist, which allow control of phase noise and frequency tuning in mode-locked l...
We report on stable dual-wavelength mode-locking of 3.1GHz and 10GHz two-section InAs/InP(100) quant...
Quantum-dot lasers have shown remarkable properties, such as temperature-insensitive operation, low ...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
For the first time a detailed study of hybrid mode-locking in two-section InAs/InP quantum dot Fabry...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
For the first time a detailed study of hybrid mode-locking in two- section InAs/InP quantum dot Fabr...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
We present an investigation of passive and hybrid mode-locking in Fabry-Pérot type two-section InAs/...
Hybrid mode-locking in monolithic quantum dot lasers is studied experimentally and theoretically. A ...
We report on stable dual-wavelength mode-locking of 3.1GHz and 10GHz two-section InAs/InP(100) quant...
Competing approaches exist, which allow control of phase noise and frequency tuning in mode-locked l...
We report on stable dual-wavelength mode-locking of 3.1GHz and 10GHz two-section InAs/InP(100) quant...
Quantum-dot lasers have shown remarkable properties, such as temperature-insensitive operation, low ...