We report on how external cavity III-V/SiN hybrid lasers operate in regimes of ultra-damped relaxation oscillations or in CW unstable dynamical regimes (self-pulsing or approaching turbulence) as a consequence of mirror dispersion, non-zero linewidth enhancement factor, and four-wave mixing in the gain medium. The impact of the dispersive mirror bandwidth and different mirror effective lengths on the laser tolerance to external optical feedback is also discussed
The back-reflection of emitted laser beam (optical feedback, also know as selfmixing) from various ...
In this letter, we report tunable operation of a gain-switched diode laser by nonresonant self-injec...
An external cavity laser with strong grating-filtered feedback to an antireflection-coated facet is ...
We report how external cavity III-V/Si hybrid lasers operate in regimes of ultra-damped relaxation o...
We address the stability of a tunable hybrid laser based on a III-V Reflective Semiconductor Optical...
In this paper, we address the physical origin of self-pulsation in narrow stripe edge emitting semic...
The main motivation behind this work was to answer the following question: what is the impact of uni...
We present a design of a tunable hybrid laser based on III-V Reflective Semiconductor Optical Amplif...
Hybrid Si/III-V is a promising platform for semiconductor narrow-linewidth lasers, since light can b...
Narrow-linewidth lasers play an important role in a wide variety of applications, from sensing and s...
The authors report a comparison of the self-pulsing characteristics of two types of semiconductor la...
As demand towards cloud-based services and high-performance computations grows, it imposes requireme...
Applications of semiconductor lasers with optical feedback systems are driving rapid developments in...
This article presents a novel III-V on silicon laser. This work exploits the phenomenon that a passi...
Funding: Science Foundation Ireland (SFI 12/RC/2276, SFI 16/ERCS/3838); Engineering and Physical Sci...
The back-reflection of emitted laser beam (optical feedback, also know as selfmixing) from various ...
In this letter, we report tunable operation of a gain-switched diode laser by nonresonant self-injec...
An external cavity laser with strong grating-filtered feedback to an antireflection-coated facet is ...
We report how external cavity III-V/Si hybrid lasers operate in regimes of ultra-damped relaxation o...
We address the stability of a tunable hybrid laser based on a III-V Reflective Semiconductor Optical...
In this paper, we address the physical origin of self-pulsation in narrow stripe edge emitting semic...
The main motivation behind this work was to answer the following question: what is the impact of uni...
We present a design of a tunable hybrid laser based on III-V Reflective Semiconductor Optical Amplif...
Hybrid Si/III-V is a promising platform for semiconductor narrow-linewidth lasers, since light can b...
Narrow-linewidth lasers play an important role in a wide variety of applications, from sensing and s...
The authors report a comparison of the self-pulsing characteristics of two types of semiconductor la...
As demand towards cloud-based services and high-performance computations grows, it imposes requireme...
Applications of semiconductor lasers with optical feedback systems are driving rapid developments in...
This article presents a novel III-V on silicon laser. This work exploits the phenomenon that a passi...
Funding: Science Foundation Ireland (SFI 12/RC/2276, SFI 16/ERCS/3838); Engineering and Physical Sci...
The back-reflection of emitted laser beam (optical feedback, also know as selfmixing) from various ...
In this letter, we report tunable operation of a gain-switched diode laser by nonresonant self-injec...
An external cavity laser with strong grating-filtered feedback to an antireflection-coated facet is ...