IEEE Photonics Technology Letters · 1992 · 41 citations · 9 references
Optical MaterialsEngineeringLaser ScienceLaser ApplicationsLaser PhysicsLaser MaterialSurface-emitting LasersHigh-power LasersOptical AmplifierLaser TechnologyOptical PropertiesOptical SystemsPhotonicsAlgaas Heterojunction PhototransistorBeam OpticsLaser CompositionAlgaas SuperlatticeOptoelectronicsApplied PhysicsNegative Optical GainOptical DevicesOptical Logic Gate
Cascadable active laser logic devices are described, demonstrating NOR and INVERTER functions with a negative optical gain of five. The surface-emitting laser logic device consists of an AlGaAs superlattice surface-emitting laser discretely connected to an AlGaAs heterojunction phototransistor in parallel. The optical logic output of 0.5 mW is controlled off with 100 mu W incident power (44 mu W absorbed) on the heterojunction phototransistor part of the device.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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Low-threshold electrically pumped vertical-cavity surface-emitting microlasers
J. L. Jewell, Ya‐Ze Lee, Sarah J. Walker et al. · Electronics Letters · 1989 · 332 citations
Top-surface-emitting GaAs four-quantum-well lasers emitting at 0.85 μm
Y.H. Lee, B. Tell, K. Brown-Goebeler et al. · Electronics Letters · 1990 · 73 citations
A. Ibaraki, Kenji Kawashima, K. Furusawa et al. · Japanese Journal of Applied Physics · 1989 · 65 citations
Wide-bandgap Semiconductor, Optical Materials, Engineering +19