Scanning voltage microscopy results clearly show that the formation of electric field domains is responsible for the missing of lasing operation in a resonant-phonon based terahertz quantum cascade laser with a highly diagonal transition.Peer reviewed: YesNRC publication: Ye
A hybrid Monte Carlo-density matrix transport simulator is used to analyze the transport properties ...
A terahertz quantum cascade laser design that combines a wide gain bandwidth, large photon-driven tr...
A novel terahertz quantum cascade laser, based on consecutive phonon-photon-phonon emissions, is pro...
We experimentally investigated the effect of oscillator strength (radiative transition diagonality) ...
The amplification of spontaneous emission is used to initiate laser action. Since the phase of spont...
The terahertz (THz) frequency quantum cascade laser (QCL) is a semiconductor heterostructure laser t...
Abstract—We report on the observance of a GaAs/AlGaAs based Quantum Cascade Laser with no injector/e...
Recently, a new design of Quantum Cascade Lasers (QCL) operating in the terahertz (THz) domain that ...
We have investigated the time-resolved vibrational properties of terahertz quantum cascade lasers by...
We report on the experimental observation of non-equilibrium longitudinal (LO) and interface transve...
In 1995, or over the past few years, Quantum Cascade Laser (QCL) was introduced to the world. It i...
A lasing scheme for terahertz quantum cascade lasers, based on consecutive phonon-photon-phonon emis...
A terahertz quantum cascade laser design that combines a wide gain bandwidth, large photon-driven tr...
The external performance of quantum optoelectronic devices is governed by the spatial profiles of el...
Even though already in the seventies, right after the invention of the quantum cascade laser (QCL) c...
A hybrid Monte Carlo-density matrix transport simulator is used to analyze the transport properties ...
A terahertz quantum cascade laser design that combines a wide gain bandwidth, large photon-driven tr...
A novel terahertz quantum cascade laser, based on consecutive phonon-photon-phonon emissions, is pro...
We experimentally investigated the effect of oscillator strength (radiative transition diagonality) ...
The amplification of spontaneous emission is used to initiate laser action. Since the phase of spont...
The terahertz (THz) frequency quantum cascade laser (QCL) is a semiconductor heterostructure laser t...
Abstract—We report on the observance of a GaAs/AlGaAs based Quantum Cascade Laser with no injector/e...
Recently, a new design of Quantum Cascade Lasers (QCL) operating in the terahertz (THz) domain that ...
We have investigated the time-resolved vibrational properties of terahertz quantum cascade lasers by...
We report on the experimental observation of non-equilibrium longitudinal (LO) and interface transve...
In 1995, or over the past few years, Quantum Cascade Laser (QCL) was introduced to the world. It i...
A lasing scheme for terahertz quantum cascade lasers, based on consecutive phonon-photon-phonon emis...
A terahertz quantum cascade laser design that combines a wide gain bandwidth, large photon-driven tr...
The external performance of quantum optoelectronic devices is governed by the spatial profiles of el...
Even though already in the seventies, right after the invention of the quantum cascade laser (QCL) c...
A hybrid Monte Carlo-density matrix transport simulator is used to analyze the transport properties ...
A terahertz quantum cascade laser design that combines a wide gain bandwidth, large photon-driven tr...
A novel terahertz quantum cascade laser, based on consecutive phonon-photon-phonon emissions, is pro...