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Optical absorption spectra and intraband dynamics in terahertz-driven semiconductor superlattice

机译:太赫兹驱动的半导体超晶格中的光吸收光谱和带内动力学

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摘要

We have theoretically investigated the optical absorption spectrum and intraband dynamics by subjecting a superlattice to both a terahertz (THz)-frequency driving held and an optical pulse by using an excitonic basis. In the presence of a THz dc field, the satellite structures in the absorption spectra are presented. The satellite structure is a result from the THz nonlinear dynamics of Wannier-Stark ladder excitons. On the other hand, the coherent intraband polarization is investigated. We find that the excitonic Bloch oscillation is driven by the THz field and yields an intraband polarization that continues to oscillate at times much longer than the intraband dephasing time. The temporal evolution of the slowly varying components of the intraband polarization is dependent on the THz frequency.
机译:我们已经通过对超晶格进行太赫兹(THz)频率驱动和使用激子基础的光脉冲进行了理论研究,研究了光吸收光谱和带内动力学。在存在太赫兹直流场的情况下,呈现了吸收光谱中的卫星结构。卫星结构是万尼尔-斯塔克梯形激子的太赫兹非线性动力学的结果。另一方面,研究了相干带内极化。我们发现,激子布洛赫振荡是由太赫兹场驱动的,并产生带内极化,该极化持续振荡的时间比带内移相时间长得多。带内极化的缓慢变化分量的时间演变取决于THz频率。

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