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Charge Carrier Dynamics of ZnSe by Optical-Pump Terahertz-Probe Spectroscopy

机译:光学泵Terahertz探针光谱法的ZnSE充电载体动力学

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The optical properties and transient dynamics of ZnSe were studied by terahertz time-domain spectroscopy (THz-TDS) and optical-pump terahertz probe (OPTP) spectroscopy, respectively. From the THz time-domain signal, the frequency-dependent absorption coefficient and index of refraction of ZnSe were calculated. It follows that the values appear to be similar with those in literatures. The complex permittivity and conductivity of ZnSe were then derived. It was found out that ZnSe exhibit a more dominant dielectric response by the Jonscher's model. It was also noted that the Drude model did not fit the conductivity data. A UV-pump pulse was introduced to observe the transient dynamics. ZnSe has a faster charge carrier relaxation compared with Si and Ge.
机译:通过太赫兹时域光谱(THZ-TDS)和光学泵太赫兹探针(OPTP)光谱研究了ZnSE的光学性质和瞬态动力学。从THz时域信号,计算ZnSE的频率依赖吸收系数和折射率。因此,这些值似乎与文献中的值类似。然后衍生ZnSe的复杂介电常数和电导率。发现Znse由Jonscher模型表现出更主导的介质响应。还注意到博德模型不适合电导率数据。引入了UV泵脉冲以观察瞬态动力学。与SI和GE相比,Z​​NSE具有更快的电荷载体弛豫。

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