Quantum cascade lasers (QCLs) are semiconductor lasers based on intersubband transitions and resonant tunneling, emitting mid- to far-infrared light. This dissertation used femtosecond (fs) mid-IR pulses generated by difference-frequency generation (DFG) to investigate the ultrafast carrier dynamics and nonlinear effects in QCLs. In this work, the carrier dynamics of high wall-plug efficiency designed QCLs were investigated utilizing fs mid-IR degenerate pump-probe technique. We observed ultrafast gain recovery within the first 200 fs due to the thin injector barrier inducing fast electron resonant tunneling, fast depletion from lower lasing level by two-phonon resonance design, and relaxation from the continuum region. The observed gain re...
In this study, we report the unequivocal demonstration of midinfrared mode-locked pulses from quantu...
Quantum cascade lasers (QCLs) have broken the spectral barriers of semiconductor lasers and enabled ...
Recently, research for semiconductor lasers has proceeded in two directions. One direction is toward...
Quantum cascade lasers (QCLs) are semiconductor lasers based on intersubband transitions and resonan...
Quantum cascade lasers (QCLs) as the state-of-the-art mid-infrared (mid-IR) coherent sources have be...
To date, quantum cascade lasers are the only semiconductor laser sources that can cover a broad rang...
In this study, the nature of electronic transport in quantum cascade lasers (QCLs) has been extensiv...
Time-resolved pump-probe differential transmission measurements have been performed on various sets ...
Abstract: Ultrafast mid-infrared pump-probe experiments are used to study gain dynamics and transpor...
Time-resolved spectroscopy-based pump-probe experiments performed on quantum cascade lasers (QCLs) e...
In recent years, quantum cascade lasers have matured to become compact, powerful sources of coherent...
textQuantum cascade lasers (QCLs) operate due to population inversion on intersubband in unipolar mu...
We have developed a comprehensive model of gain recovery due to unipolar electron transport after a ...
Quantum cascade lasers (QCLs) are unipolar laser sources relying on intersubband transitions in coup...
Quantum cascade lasers (QCLs) are unipolar lasers where lasing transition and carrier transport occu...
In this study, we report the unequivocal demonstration of midinfrared mode-locked pulses from quantu...
Quantum cascade lasers (QCLs) have broken the spectral barriers of semiconductor lasers and enabled ...
Recently, research for semiconductor lasers has proceeded in two directions. One direction is toward...
Quantum cascade lasers (QCLs) are semiconductor lasers based on intersubband transitions and resonan...
Quantum cascade lasers (QCLs) as the state-of-the-art mid-infrared (mid-IR) coherent sources have be...
To date, quantum cascade lasers are the only semiconductor laser sources that can cover a broad rang...
In this study, the nature of electronic transport in quantum cascade lasers (QCLs) has been extensiv...
Time-resolved pump-probe differential transmission measurements have been performed on various sets ...
Abstract: Ultrafast mid-infrared pump-probe experiments are used to study gain dynamics and transpor...
Time-resolved spectroscopy-based pump-probe experiments performed on quantum cascade lasers (QCLs) e...
In recent years, quantum cascade lasers have matured to become compact, powerful sources of coherent...
textQuantum cascade lasers (QCLs) operate due to population inversion on intersubband in unipolar mu...
We have developed a comprehensive model of gain recovery due to unipolar electron transport after a ...
Quantum cascade lasers (QCLs) are unipolar laser sources relying on intersubband transitions in coup...
Quantum cascade lasers (QCLs) are unipolar lasers where lasing transition and carrier transport occu...
In this study, we report the unequivocal demonstration of midinfrared mode-locked pulses from quantu...
Quantum cascade lasers (QCLs) have broken the spectral barriers of semiconductor lasers and enabled ...
Recently, research for semiconductor lasers has proceeded in two directions. One direction is toward...