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首页> 外文期刊>Physical Review, B. Condensed Matter >Density-functional theory approach to ultrafast laser excitation of semiconductors: Application to the A(1) phonon in tellurium - art. no. 054302
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Density-functional theory approach to ultrafast laser excitation of semiconductors: Application to the A(1) phonon in tellurium - art. no. 054302

机译:半导体超快激光激发的密度泛函理论方法:在碲中的A(1)声子的应用-艺术。没有。 054302

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Calculations of the A(1) phonon frequency in photoexcited tellurium are presented. The phonon frequency as a function of photoexcited carrier density and phonon amplitude is determined, including anharmonic effects. The sensitivity of the A(1) mode to photoexcitation is related to the Peierls mechanism for stabilizing the alpha-Te structure. The assumptions of slow and fast carrier recombination are investigated and it is found that the two regimes give qualitatively different predictions for the excitation dependence of the phonon frequency. Recent pump-probe experiments are compared with the calculations. The predictions based on fast carrier recombination are not in agreement with experiment. The reflectivity oscillations expected to occur in pump-probe experiments are simulated, including the coupled effects of optical absorption, carrier diffusion, and phonon dynamics. Using the calculated dependence of phonon frequency on carrier density (assuming slow carrier recombination) and experimental values for the optical dielectric constants, the derivative of the frequency peak for reflectivity oscillations with respect to pump fluence is found to be -0.085 THz per mJ/cm(2), compared to an experimental value of -0.07 THz per mJ/cm(2) in the low-fluence regime. The ambipolar diffusion constant for the optically excited carriers is estimated to be 10 cm(2)/s, substantially smaller than its equilibrium value. The effects of carrier diffusion are found to be more important than phonon anharmonicity in the observed changes of phonon frequency within the first few cycles of motion after laser excitation. Greatly increased damping of the reflectivity oscillations at high pump fluences, which was reported in recent experiments, is not found in the simulations. [References: 41]
机译:提出了光激发碲中A(1)声子频率的计算。确定声子频率与光激发载流子密度和声子振幅的函数关系,包括非谐波效应。 A(1)模式对光激发的敏感性与用于稳定α-Te结构的Peierls机制有关。研究了慢和快载流子重组的假设,发现这两种方式对于声子频率的激发依赖性给出了定性不同的预测。将最近的泵浦探针实验与计算结果进行了比较。基于快速载子重组的预测与实验不一致。模拟了预期在泵浦探针实验中发生的反射率振荡,包括光吸收,载流子扩散和声子动力学的耦合效应。使用计算得出的声子频率对载流子密度(假设缓慢的载流子复合)的依赖性和光学介电常数的实验值,发现反射率振荡的频率峰值相对于泵浦注量的导数为-0.085 THz / mJ / cm (2),与低通量方案中的-0.07 THz / mJ / cm(2)的实验值相比。光激发载流子的双极性扩散常数估计为10 cm(2)/ s,大大小于其平衡值。发现在激光激发后的最初几个运动周期内,在观察到的声子频率变化方面,载流子扩散的影响比声子非谐性更为重要。在模拟中未发现在高泵浦注量下反射率振荡的阻尼大大增加。 [参考:41]

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