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Ultrafast probing of light-matter interaction in a midinfrared quantum cascade laser

机译:中红外量子级联激光器中光物质相互作用的超快探测

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In this work, we study the interaction of ultrashort midinfrared pulses with the active medium of an InGaAs/InAlAs/InP quantum cascade laser emitting at an 11.7 μm wavelength. Applying an electro-optic sampling technique allowed us to measure the complete phase resolved transmission spectra at operating conditions below and above lasing threshold in a spectral range much broader than the gain band width. Far below threshold, we locate broadband resonant absorption, which spectrally overlaps with the electrically induced gain, forming areas of net absorption and net gain. Above threshold, gain clamping is seen, and it is found that echoes delayed by the round trip time experience spectral pulse shaping converging toward the emission spectrum.
机译:在这项工作中,我们研究了超短中红外脉冲与以11.7μm波长发射的InGaAs / InAlAs / InP量子级联激光器的活性介质的相互作用。应用电光采样技术使我们能够在低于和高于激光阈值的工作条件下在比增益带宽宽得多的光谱范围内测量完整的相位分辨透射光谱。我们远远低于阈值,定位宽带谐振吸收,该频谱在频谱上与电感应增益重叠,形成了净吸收和净增益区域。在阈值之上,可以看到增益钳位,并且发现被往返时间延迟的回波经历了频谱脉冲整形,向发射频谱收敛。

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