The temperature dependence of the threshold current of InGaAsSb/AlGaAsSb compressively strained lasers is investigated by analyzing the spontaneous emission from working laser devices through a window formed in the substrate metallization and by applying high pressures. It is found that nonradiative recombination accounts for 80% of the threshold current at room temperature and is responsible for the high temperature sensitivity. The authors suggest that Auger recombination involving hot holes is suppressed in these devices because the spin-orbit splitting energy is larger than the band gap, but other Auger processes persist and are responsible for the low T-0 values.</p
We investigate loss mechanisms in 1.3mum lasers and in visible lasers operating between 630nm and 69...
We report on the pressure dependence of the threshold current in 1.3 µm InGaAsP and 1.5 µm InGaAs ...
We report on the pressure dependence of the threshold current in 1.3 µm InGaAsP and 1.5 µm InGaAs ...
The temperature dependence of the threshold current of InGaAsSb/AlGaAsSb compressively strained lase...
The temperature dependence of the threshold current of InGaAsSb/AlGaAsSb compressively strained lase...
We investigated the influence of Auger recombination from 90 K to above room temperature and found i...
We investigated the influence of Auger recombination from 90 K to above room temperature and found i...
High pressure and spontaneous emission analysis techniques have been used to probe the recombination...
We investigated the threshold current, Ith, and its temperature dependence, To(Ith), for 1.3μm and 1...
We report on the pressure dependence of the threshold current in 1.3 mum InGaAsP and 1.5 mum InGaAs ...
We report on the pressure dependence of the threshold current in 1.3 mum InGaAsP and 1.5 mum InGaAs ...
We investigated the threshold current, Ith, and its temperature dependence, To(Ith), for 1.3μm and 1...
Measurements of the threshold current, Ith as a function of temperature, T were performed on 1.3 μm ...
Measurements of the threshold current, Ith as a function of temperature, T were performed on 1.3 μm ...
Hydrostatic pressure and spontaneous emission techniques have been used to examine the important rec...
We investigate loss mechanisms in 1.3mum lasers and in visible lasers operating between 630nm and 69...
We report on the pressure dependence of the threshold current in 1.3 µm InGaAsP and 1.5 µm InGaAs ...
We report on the pressure dependence of the threshold current in 1.3 µm InGaAsP and 1.5 µm InGaAs ...
The temperature dependence of the threshold current of InGaAsSb/AlGaAsSb compressively strained lase...
The temperature dependence of the threshold current of InGaAsSb/AlGaAsSb compressively strained lase...
We investigated the influence of Auger recombination from 90 K to above room temperature and found i...
We investigated the influence of Auger recombination from 90 K to above room temperature and found i...
High pressure and spontaneous emission analysis techniques have been used to probe the recombination...
We investigated the threshold current, Ith, and its temperature dependence, To(Ith), for 1.3μm and 1...
We report on the pressure dependence of the threshold current in 1.3 mum InGaAsP and 1.5 mum InGaAs ...
We report on the pressure dependence of the threshold current in 1.3 mum InGaAsP and 1.5 mum InGaAs ...
We investigated the threshold current, Ith, and its temperature dependence, To(Ith), for 1.3μm and 1...
Measurements of the threshold current, Ith as a function of temperature, T were performed on 1.3 μm ...
Measurements of the threshold current, Ith as a function of temperature, T were performed on 1.3 μm ...
Hydrostatic pressure and spontaneous emission techniques have been used to examine the important rec...
We investigate loss mechanisms in 1.3mum lasers and in visible lasers operating between 630nm and 69...
We report on the pressure dependence of the threshold current in 1.3 µm InGaAsP and 1.5 µm InGaAs ...
We report on the pressure dependence of the threshold current in 1.3 µm InGaAsP and 1.5 µm InGaAs ...