International audienceThe pulse-to-pulse rms timing jitter of a 5.25-GHz quantum-dot (QD) two-section passively mode-locked laser is characterized through an all-microwave technique. The experimental phase noise spectra at different harmonics are in good agreement with previous diffusion-based theory. This theory is validated for a QD mode-locked laser device for the first time. This measurement technique provides a simple way to characterize the noise performance of a passively mode-locked laser. Furthermore, the average pulse-to-pulse rms timing jitter reduces from 295 to 32 fs/cycle via external optical
Using models based on delay differential equation (DDE) and finite difference traveling wave (FDTW),...
We report 35 GHz passive mode-locking and 20 GHz hybrid mode-locking of quantum dot (QD) lasers at 1...
40 GHz quantum-dot mode-locked lasers providing low-jitter optical and electrical microwave signals ...
International audienceThe timing jitter performance of a 5 GHz quantum dot passively mode-locked las...
The noise properties of the pulse trains of passively mode-locked 40 GHz quantum-dot lasers subject ...
Semiconductor mode-locked lasers (MLLs) are important as compact and cost-effective sources of picos...
We study the effect of noise on the dynamics of passively mode-locked semiconductor lasers both expe...
International audienceThe effect of external optical feedback on a packaged monolithic quantum dot p...
High-power picosecond pulses with very low timing jitter have been produced by monolithic passively ...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
International audienceThe effect of external optical feedback on an InAs/GaAs quantum dot passively ...
Passively mode-locked lasers based on InAs/GaAs quantum dots have benefited from the unique properti...
A packaged 10GHz monolithic two-section quantum-dot mode-locked laser is presented, with record narr...
Abstract:Microwave signal generation from the saturable absorber of a monolithic quantum dot passive...
Lasers have been widely used in various fields since the invention of first laser in 1960. Low-noise...
Using models based on delay differential equation (DDE) and finite difference traveling wave (FDTW),...
We report 35 GHz passive mode-locking and 20 GHz hybrid mode-locking of quantum dot (QD) lasers at 1...
40 GHz quantum-dot mode-locked lasers providing low-jitter optical and electrical microwave signals ...
International audienceThe timing jitter performance of a 5 GHz quantum dot passively mode-locked las...
The noise properties of the pulse trains of passively mode-locked 40 GHz quantum-dot lasers subject ...
Semiconductor mode-locked lasers (MLLs) are important as compact and cost-effective sources of picos...
We study the effect of noise on the dynamics of passively mode-locked semiconductor lasers both expe...
International audienceThe effect of external optical feedback on a packaged monolithic quantum dot p...
High-power picosecond pulses with very low timing jitter have been produced by monolithic passively ...
In recent years, passively mode-locked quantum dot lasers have shown great promise as compact, effic...
International audienceThe effect of external optical feedback on an InAs/GaAs quantum dot passively ...
Passively mode-locked lasers based on InAs/GaAs quantum dots have benefited from the unique properti...
A packaged 10GHz monolithic two-section quantum-dot mode-locked laser is presented, with record narr...
Abstract:Microwave signal generation from the saturable absorber of a monolithic quantum dot passive...
Lasers have been widely used in various fields since the invention of first laser in 1960. Low-noise...
Using models based on delay differential equation (DDE) and finite difference traveling wave (FDTW),...
We report 35 GHz passive mode-locking and 20 GHz hybrid mode-locking of quantum dot (QD) lasers at 1...
40 GHz quantum-dot mode-locked lasers providing low-jitter optical and electrical microwave signals ...