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Gain measurements on GaAs-based quantum cascade lasers using a two-section cavity technique

机译:使用两节腔技术在基于GaAs的量子级联激光器上进行增益测量

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A two-section cavity device has been used to measure gain spectra and waveguide losses of a GaAs-based quantum cascade laser. The device operates at 8.9 /spl mu/m and optical confinement is obtained by means of Al-free cladding layers. We investigated the gain characteristics in a spectral window of /spl sim/60 meV and up to 200 K. For current densities ranging from 1 to 8 kA/cm/sup 2/, we report a constant gain coefficient of 13 cm/kA at 4 K and 6 cm/kA at 200 K. At low temperatures and for current densities above 8 kA/cm/sup 2/, we observe gain saturation which we attribute to a reduced electron injection in the active region caused by space charge effects. We report a value of 22 cm/sup -1/ for the waveguide losses in good agreement with previous measurements.
机译:两节腔器件已用于测量基于GaAs的量子级联激光器的增益谱和波导损耗。该设备以8.9 / spl mu / m的速度运行,并且通过无铝包覆层实现了光学限制。我们研究了在/ spl sim / 60 meV以及最高200 K的光谱窗口中的增益特性。对于1至8 kA / cm / sup 2 /的电流密度,我们报告了在13 cm / kA的恒定增益系数在200 K时为4 K和6 cm / kA。在低温和高于8 kA / cm / sup 2 /的电流密度下,我们观察到增益饱和,这归因于空间电荷效应引起的有源区电子注入减少。我们报告波导损耗的值为22 cm / sup -1 /,与先前的测量结果非常吻合。

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