The hot electron light emitting and lasing in semiconductor heterostructure-vertical-cavity semiconductor optical amplifier (HELLISH-VCSOA) device is based on Ga0.35In0.65 N0.02As0.08/GaAs material for operation in the 1.3-μm window of the optical communications. The device has undoped distributed Bragg reflectors (DBRs). Therefore, problems such as those associated with refractive index contrast and current injection, which are common with doped DBRs in conventional VCSOAs, are avoided. The gain versus applied electric field curves are measured at different wavelengths using a tunable laser as the source signal. The highest gain is obtained for the 1.3-μm wavelength when an electric field in excess of 2 kV/cm is applied along the layers of...
The compatibility of GaInNAs/GaAs active regions with AlGaAs Bragg mirror technology opens up a rang...
Long-wavelength (1.3-μm) vertical-cavity surface-emitting lasers (VCSELs) are of great interest as l...
Vertical cavity surface emitting lasers (VCSELs) are today a commodity on the short wavelength laser...
Hot electron light emission and lasing in semiconductor heterostructure (Hellish) devices are surfac...
Hot electron light emission and lasing in semiconductor heterostructure (Hellish) devices are surfac...
The Top-Hat hot electron light emission and lasing in semiconductor heterostructure (HELLISH)-vertic...
The Top-Hat hot electron light emission and lasing in semiconductor heterostructure (HELLISH)-vertic...
We report the observation of room-temperature optical gain at 1.3 μm in electrically driven dilute n...
III-V semiconductors components such as Gallium Arsenic (GaAs), Indium Antimony (InSb), Aluminum Ars...
The hot Electron Light Emission and Lasing in Semiconductor Heterostructures devices (HELLISH-1) is ...
The hot Electron Light Emission and Lasing in Semiconductor Heterostructure devices (HELLISH-1)is no...
Hot electron light emitting and lasing in semiconductor heterostructures (HELLISH) is a longitudinal...
The Hot Electron Light Emitting and Lasing in Semiconductor Heterostructure (HELLISH-1) device is a ...
The objective of this work is to study the electronic properties of GaInNAs semiconductor alloy in o...
A comprehensive study of the electroluminescence of four GaAs/AlGaAs microcavity devices with InAs/G...
The compatibility of GaInNAs/GaAs active regions with AlGaAs Bragg mirror technology opens up a rang...
Long-wavelength (1.3-μm) vertical-cavity surface-emitting lasers (VCSELs) are of great interest as l...
Vertical cavity surface emitting lasers (VCSELs) are today a commodity on the short wavelength laser...
Hot electron light emission and lasing in semiconductor heterostructure (Hellish) devices are surfac...
Hot electron light emission and lasing in semiconductor heterostructure (Hellish) devices are surfac...
The Top-Hat hot electron light emission and lasing in semiconductor heterostructure (HELLISH)-vertic...
The Top-Hat hot electron light emission and lasing in semiconductor heterostructure (HELLISH)-vertic...
We report the observation of room-temperature optical gain at 1.3 μm in electrically driven dilute n...
III-V semiconductors components such as Gallium Arsenic (GaAs), Indium Antimony (InSb), Aluminum Ars...
The hot Electron Light Emission and Lasing in Semiconductor Heterostructures devices (HELLISH-1) is ...
The hot Electron Light Emission and Lasing in Semiconductor Heterostructure devices (HELLISH-1)is no...
Hot electron light emitting and lasing in semiconductor heterostructures (HELLISH) is a longitudinal...
The Hot Electron Light Emitting and Lasing in Semiconductor Heterostructure (HELLISH-1) device is a ...
The objective of this work is to study the electronic properties of GaInNAs semiconductor alloy in o...
A comprehensive study of the electroluminescence of four GaAs/AlGaAs microcavity devices with InAs/G...
The compatibility of GaInNAs/GaAs active regions with AlGaAs Bragg mirror technology opens up a rang...
Long-wavelength (1.3-μm) vertical-cavity surface-emitting lasers (VCSELs) are of great interest as l...
Vertical cavity surface emitting lasers (VCSELs) are today a commodity on the short wavelength laser...