IEEE Photonics Technology Letters · 1997 · 101 citations · 7 references
Wide-bandgap SemiconductorPhotonicsElectrical EngineeringμM Laser DiodesShort-cavity MushroomEngineeringSemiconductor LasersLaser ScienceHigh-speed 1.55Rf SemiconductorApplied PhysicsLaser ApplicationsLaser MaterialAluminum Gallium NitrideMicroelectronicsOptoelectronicsHigh-power Lasers
High-speed 1.55 μm laser diodes with a 3-dB modulation bandwidths of 30 GHz were fabricated by using short-cavity mushroom structures with undoped, strain-compensated InGaAlAs-InGaAsP twenty-quantum-well active regions. The bandwidths were achieved at low bias current of 100 mA. The laser exhibited a high differential gain of 1.54×10/sup -15/ cm <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sup> and a small K factor of 0.135 ns. These results were achieved by using an In/sub 0.386/Ga/sub 0.465/AlAs barrier with 0.83% tensile strain to reduce the thermal emission time of holes from wells and hence the hole transport time.
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Frequency response of 1.3µm InGaAsP high speed semiconductor lasers
R. Olshansky, P. Hill, V. Lanzisera et al. · IEEE Journal of Quantum Electronics · 1987 · 294 citations
J. Shimizu, Hirohito Yamada, S. Murata et al. · IEEE Photonics Technology Letters · 1991 · 44 citations