A monolithic, three-section, and widely tunable mid-infrared (mid-IR) quantum cascade laser (QCL) is demonstrated. This electrically tuned laser consists of a gain section placed between two super structure grating (SSG) distributed Bragg reflectors (DBRs). By varying the injection currents to the two grating sections of this device, its emission wavelength can be tuned from 4.58 μm to 4.77 μm (90 cm−1) with a supermode spacing of 30 nm. This type of SSG-DBR QCLs can be a compact replacement for the external cavity QCL. It has great potential to achieve gap-free and even further tuning ranges for sensor applications
We present a design of quantum cascade laser arrays made of ridge-waveguide devices in which the emi...
We report experimental demonstration of tunable, monolithic, single-mode quantum cascade lasers (QCL...
We present an active-passive monolithic integration platform developed for the mid-infrared spectral...
A monolithic, three-section, and widely tunable mid-infrared (mid-IR) quantum cascade laser (QCL) is...
Quantum cascade lasers (QCLs) are essential components for mid-infrared optical spectroscopy. Curren...
Mid-infrared (mid-IR λ ≈ 3–12 μm), single-mode-emission Quantum Cascade Lasers (QCLs) are of signifi...
International audienceWe report designs and experimental demonstrations of a widely tunable single-m...
The mid-infrared (Mid-IR) wavelength range is important for applications including medical and secur...
Quantum cascade (QC) lasers, invented and first demonstrated at Bell Labs in 1994, already outperfor...
Multi-spectral midwave-infrared (mid-IR) lasers are demonstrated by directly bonding quantum cascade...
AbstractBrighter and more efficient light sources are desired to further increase the sensitivity of...
The tremendous developments of quantum cascade lasers (QCLs) have proven themselves as powerful tool...
This thesis is concerned with the design, fabrication and characterisation of monolithic tuneable qu...
In this article we present our latest work on the optimization of mid-infrared quantum cascade laser...
Since its invention 25 years ago, the quantum cascade laser (QCL) has become one of the go-to source...
We present a design of quantum cascade laser arrays made of ridge-waveguide devices in which the emi...
We report experimental demonstration of tunable, monolithic, single-mode quantum cascade lasers (QCL...
We present an active-passive monolithic integration platform developed for the mid-infrared spectral...
A monolithic, three-section, and widely tunable mid-infrared (mid-IR) quantum cascade laser (QCL) is...
Quantum cascade lasers (QCLs) are essential components for mid-infrared optical spectroscopy. Curren...
Mid-infrared (mid-IR λ ≈ 3–12 μm), single-mode-emission Quantum Cascade Lasers (QCLs) are of signifi...
International audienceWe report designs and experimental demonstrations of a widely tunable single-m...
The mid-infrared (Mid-IR) wavelength range is important for applications including medical and secur...
Quantum cascade (QC) lasers, invented and first demonstrated at Bell Labs in 1994, already outperfor...
Multi-spectral midwave-infrared (mid-IR) lasers are demonstrated by directly bonding quantum cascade...
AbstractBrighter and more efficient light sources are desired to further increase the sensitivity of...
The tremendous developments of quantum cascade lasers (QCLs) have proven themselves as powerful tool...
This thesis is concerned with the design, fabrication and characterisation of monolithic tuneable qu...
In this article we present our latest work on the optimization of mid-infrared quantum cascade laser...
Since its invention 25 years ago, the quantum cascade laser (QCL) has become one of the go-to source...
We present a design of quantum cascade laser arrays made of ridge-waveguide devices in which the emi...
We report experimental demonstration of tunable, monolithic, single-mode quantum cascade lasers (QCL...
We present an active-passive monolithic integration platform developed for the mid-infrared spectral...