We present detailed derivation of our new model for femtosecond pulse amplification in semiconductor laser amplifiers. The various dynamic nonlinear terms of gain compression and associated self-phase modulation are derived semiphenomenologically, and are discussed physically. Included are the effects of carrier depletion, carrier heating and spectral hole-burning, as well as linear and two photon absorption and the instantaneous nonlinear index. Additionally, we account for dynamically changing gain curvature and slope. We apply the theory to strong signal cross-phase-cross-gain modulation experiments with similar to 500 fs pulses in a broad area GaAs amplifier and show that the model accurately describes the observed complex phenomena. We...
The gain dynamics of a semiconductor optical amplifier (SOA) are studied for the amplification of lo...
The nonlinear gain response of InGaAsP bulk optical amplifiers under ultrafast optical excitation at...
We investigate ultrafast refractive index dynamics in a multiquantum-well InGaAsP-InGaAs semiconduct...
We present detailed derivation of our new model for femtosecond pulse amplification in semiconductor...
We present a phenomenological model of subpicosecond pulse evolution in semiconductor laser amplifie...
We investigate nonlinear carrier dynamics in a multiquantum-well semiconductor optical amplifier (SO...
We describe the generation of femtosecond high power optical pulses using hybrid passive-active mode...
We explain how a semiconductor optical amplifier in a Sagnac-interferometric arrangement can be used...
We describe the generation of femtosecond high power optical pulses using hybrid passive-active mode...
We apply a new rate-equation model to study the propagation of sub-picosecond optical pulses in a se...
The ultrafast gain dynamics of an AlGaAs semiconductor optical amplifier (SOA) are measured under ph...
The temporal evolution of self-phase modulation dynamics in a semiconductor optical amplifier is stu...
The gain dynamics of a semiconductor optical amplifier (SOA) are studied for the amplification of lo...
The nonlinear gain response of InGaAsP bulk optical amplifiers under ultrafast optical excitation at...
We investigate ultrafast refractive index dynamics in a multiquantum-well InGaAsP-InGaAs semiconduct...
We present detailed derivation of our new model for femtosecond pulse amplification in semiconductor...
We present a phenomenological model of subpicosecond pulse evolution in semiconductor laser amplifie...
We investigate nonlinear carrier dynamics in a multiquantum-well semiconductor optical amplifier (SO...
We describe the generation of femtosecond high power optical pulses using hybrid passive-active mode...
We explain how a semiconductor optical amplifier in a Sagnac-interferometric arrangement can be used...
We describe the generation of femtosecond high power optical pulses using hybrid passive-active mode...
We apply a new rate-equation model to study the propagation of sub-picosecond optical pulses in a se...
The ultrafast gain dynamics of an AlGaAs semiconductor optical amplifier (SOA) are measured under ph...
The temporal evolution of self-phase modulation dynamics in a semiconductor optical amplifier is stu...
The gain dynamics of a semiconductor optical amplifier (SOA) are studied for the amplification of lo...
The nonlinear gain response of InGaAsP bulk optical amplifiers under ultrafast optical excitation at...
We investigate ultrafast refractive index dynamics in a multiquantum-well InGaAsP-InGaAs semiconduct...