Title :
High-power picosecond pulse amplification and generation in field-effect GaAs-AlGaAs laser diodes with saturable absorption
Author :
Sutkus, Kestutis ; Shum, Kai ; Alfano, R.R.
Author_Institution :
Inst. of Opt. & Fine Mech., Acad. Sinica, Shanghai, China
fDate :
11/1/1994 12:00:00 AM
Abstract :
The amplification and generation of picosecond optical pulses by a field-effect semiconductor traveling wave amplifier are investigated using modified traveling wave equations. It is shown that gain of a field-effect traveling wave amplifier at a constant applied electric field can be increased several times due to hot electron transfer from satellite to central valley. When the electric field is modulated synchronously with input pulses, a single pass gain as high as 105 can be achieved. The modulation of the applied electric field can be used for the generation of high peak power picosecond optical pulses. The saturable absorption of photons in the active region of the field-effect laser leads to the generation of ultrashort optical pulses at an applied electric field
Keywords :
III-V semiconductors; aluminium compounds; field effect devices; gallium arsenide; high-speed optical techniques; hot carriers; optical saturable absorption; semiconductor lasers; travelling wave amplifiers; wave equations; GaAs-AlGaAs; active region; central valley; constant applied electric field; electric field; field-effect GaAs-AlGaAs laser diodes; field-effect semiconductor traveling wave amplifier; high peak power picosecond optical pulses; high-power picosecond pulse amplification; high-power picosecond pulse generation; hot electron transfer; input pulses; modified traveling wave equations; modulation; satellite; saturable absorption; single pass gain; ultrashort optical pulses; Electrons; Optical amplifiers; Optical pulse generation; Optical pulses; Partial differential equations; Pulse amplifiers; Pulse generation; Pulse modulation; Satellites; Semiconductor optical amplifiers;
Journal_Title :
Quantum Electronics, IEEE Journal of