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Ab initio study of temperature- and pressure dependence of energy and phonon-induced dephasing of electronic excitations in CdSe and PbSe quantum dots

机译:从头开始研究CdSe和PbSe量子点中能量和声子对电子激发的相移的温度和压力依赖性

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摘要

The pressure and temperature dependence of the lowest excitation energy of PbSe (Pb68Se68, d = 2.0 nm) and CdSe (Cd33Se33, d = 1.6 nm) quantum dots (QDs) were investigated by ab initio density functional theory and molecular dynamics simulation. Additionally, pure-dephasing/decoherence induced by the electron-phonon interaction was studied using optical response theory for several pairs of electronic states, including ground, excitonic and biexcitonic states. Linear dependence on temperature was observed for all quantities under consideration. The results were consistent with other theoretical and experimental reports. The ab initio data was analyzed using the effective mass approximation and the hyperbolic band model. The analysis confirmed the temperature dependence of the effective mass in the PbSe QD, as suggested in a recent experimental report [Liptay, T. J.; Ram, R. J. Appl. Phys. Lett. 2006, 89, 223132].
机译:通过从头算密度函数理论和分子动力学模拟研究了PbSe(Pb68Se68,d = 2.0 nm)和CdSe(Cd33Se33,d = 1.6 nm)量子点(QDs)的最低激发能的压力和温度依赖性。另外,使用光学响应理论研究了由电子-声子相互作用引起的纯相移/退相干,该方法用于几对电子态,包括基态,激子态和双激子态。对于所考虑的所有数量,观察到对温度的线性依赖性。结果与其他理论和实验报告一致。使用有效质量近似和双曲带模型分析了从头算数据。分析证实了PbSe QD中有效物质的温度依赖性,如最近的实验报告所建议的那样[Liptay,T. J .; Ram,R. J. Appl。物理来吧2006,89,223132]。

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