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Investigation of coherent acoustic phonons in terahertz quantum cascade laser structures using femtosecond pump-probe spectroscopy

机译:飞秒泵浦-探针光谱研究太赫兹量子级联激光器结构中的相干声子

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摘要

The dynamics of acoustic vibrations in terahertz quantum cascade laser structures (THz-QCLs) is studied by means of femtosecond pump-probe spectroscopy. The phonon modes are characterized by the folding of the acoustic dispersion into an effective reduced Brillouin zone. An accurate identification of this dispersion allows the sample structure and periodicity to be determined with high precision on the order of 0.1%. By temperature tuning the energy of the electronic levels of the system and performing wavelength dependent measurements, we are able to study the impulsive resonant generation and detection of coherent acoustic phonon modes. These results are supported by simulations of the electronic system that well explain the experimental observations. The effects of interface (IF) roughness on coherent acoustic phonon spectra are clearly observed for equal nominal THz-QCL structures but with different interface qualities.
机译:利用飞秒泵浦-探针光谱研究了太赫兹量子级联激光器结构(THz-QCLs)中的声振动动力学。声子模式的特征在于将声波扩散折叠到有效的减小的布里渊区中。对该分散体的准确识别可以使样品结构和周期性的测定精度达到0.1%左右。通过温度调节系统电子能级的能量并执行与波长有关的测量,我们能够研究脉冲共振产生和相干声子模式的检测。这些结果得到了电子系统仿真的支持,可以很好地解释实验观察结果。对于相同的标称THz-QCL结构,但具有不同的界面质量,可以清楚地观察到界面(IF)粗糙度对相干声子光谱的影响。

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