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APS -APS March Meeting 2017 - Event - Photoexcitations in a 1D manganite model: From quasiclassical light absorption to quasiparticle relaxations

机译:APS -APS 3月会议2017年 - 事件 - 1D锰铁模型中的PhotoExcitations:从拟填基金放松的拟卡索特光吸收

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We investigate 1D correlated systems following a photoexcitation by combining ab-initio methods, time-dependent matrix product state (MPS) approaches, analytical insights from linearized quantum Boltzmann equations (LBE), and molecular dynamics (MD) simulations to describe the dynamics on different time scales ranging from femto- up to nanoseconds. This is done for manganite systems in the material class Pr$_{1-x}$Ca$_x$MnO$_3$. We derive 1D ab-initio model Hamiltonians for which we compute the ground states at different values of the doping using MD simulations. At half doping, we obtain a magnetic microstructure of alternating dimers from which we derive a 1D Hubbard-type model. The dynamics is analyzed concerning the formation and lifetime of such quasiparticles via a LBE. We find that the magnetic microstructure strongly enhances the lifetime of the excitations. In this way, our work constitutes a first step to building a unifying theoretical framework for the description of photoexcitations in strongly correlated materials over a wide range of time scales, capable of making predictions for ongoing experiments investigating pump-probe situations and unconventional photovoltaics.
机译:通过组合AB-Initio方法,时间相关的矩阵产品状态(MPS)方法,从线性化量子Boltzmann方程(LBE)的分析见解和分子动态(MD)模拟来描述不同的分析思想从毫微微达到纳秒的时间尺度。这是在材料类PR $ _ {1-X} $ CA $ _X $ MNO $ _3 $的锰铁系统完成的。我们派生了1D AB-Initio Model Hamiltonians,我们使用MD仿真计算掺杂的不同值的地面状态。在半掺杂时,我们获得的交替二聚体的磁性微观结构,我们从中获得了1D Hubbard型模型。通过LBE对这种Quasiply的形成和寿命分析动态。我们发现磁性微观结构强烈增强了激发的寿命。通过这种方式,我们的作品构成了构建统一理论框架的第一步,用于描述在各种时间尺度上具有强烈相关材料中的光透视的光透视的理论框架,能够对正在进行的实验中调查泵探针情况和非传统光伏的预测。

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