Publication | Open Access
Damping-limited modulation bandwidths up to 40 GHz in undoped short-cavity In/sub 0.35/Ga/sub 0.65/As-GaAs multiple-quantum-well lasers
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1996
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PhotonicsQuantum ScienceEngineeringLaser SciencePhysicsWavelength TuningQuantum DeviceCavity QedApplied PhysicsLaser Applications0.65/As-gaas Multiple-quantum-well LasersLinewidth Enhancement FactorsCw Direct ModulationQuantum Photonic DeviceMicrowave PhotonicsOptoelectronicsHigh-power LasersDamping-limited Modulation Bandwidths
We demonstrate record direct modulation bandwidths from MBE-grown In/sub 0.35/Ga/sub 0.65/As-GaAs multiple-quantum-well lasers with undoped active regions and with the upper and lower cladding layers grown at different growth temperatures. Short-cavity ridge waveguide lasers achieve CW direct modulation bandwidths up to 40 GHz for 6×130 μm <sup xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">2</sup> devices at a bias current of 155 mA, which is the damping limit for this structure. We further demonstrate large-signal digital modulation up to 20 Gb/s (limited by the measurement setup) and linewidth enhancement factors of 1.4 at the lasing wavelength at threshold of /spl sim/1.1 μm for these devices.
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