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A mode-locking mechanism by active gain modulation is studied numerically and experimentally. The parameter window for the emission of stable pulse trains was found. Pulses as short as 3 ps (~0.5 pJ) were characterized by second-order autocorrelation.
We present an overview of our results on the design, material growth, device characterization, and spectroscopic applications of MOVPE-grown quantum cascade lasers (QCLs). These devices are capable of room-temperature (RT) continuous-wave operation and high power emission. The first section focuses on growth of laser material, device fabrication, and quantum design The second section discusses RT...
Ultrafast upconversion is employed to investigate pulse propagation in quantum cascade lasers. The authors have observed advances of the pulse peak to early times, pulse re-shaping, and evidence of a coherent contribution to pulse propagation.
We investigate the dynamics of quantum cascade lasers and find that spatial hole burning and the Risken-Nummedal-Graham-Haken (RNGH) instability are the main causes for multimode operation in these semiconductor lasers.
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