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Characterization of Quantum-Cascade Lasers Using Single-Pass Transmission Spectroscopy

机译:量子级联激光器的单程透射光谱表征

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The study of the electron distribution and intersubband transitions in quantum cascade (QC) lasers provides fundamental insights into the laser operation. Measurements on intersubband transitions are often performed on QC lasers under nonoperating conditions, i.e., at zero electric field. In this study, a single-pass transmission technique that allows for probing of QC lasers under operating conditions was used. The measurements and analysis were done on QC lasers with vertical and diagonal transition active region designs operating at lambda ~ 10 mum. The single-pass modal gain coefficients, extracted for the vertical transition design, were 24.04 cm/kA at 100 K, 21.36 cm/kA at 125 K, 14.25 cm/kA at 150 K, and 5.26 cm/kA at 175 K.
机译:对量子级联(QC)激光器中电子分布和子带间跃迁的研究为激光器的运行提供了基础知识。通常在非工作条件下,即在零电场下,在QC激光器上进行子带间跃迁的测量。在这项研究中,使用了允许在工作条件下探测QC激光器的单通传输技术。测量和分析是在具有垂直和对角过渡有源区设计的QC激光器上进行的,该有源区设计在λ〜10μm下工作。为垂直过渡设计提取的单通模态增益系数在100 K下为24.04 cm / kA,在125 K下为21.36 cm / kA,在150 K下为14.25 cm / kA,在175 K下为5.26 cm / kA。

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