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Towards TDDFT for Strongly Correlated Materials

机译:面向强相关材料的TDDFT

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We present some details of our recently-proposed Time-Dependent Density-Functional Theory (TDDFT) for strongly-correlated materials in which the exchange-correlation (XC) kernel is derived from the charge susceptibility obtained using Dynamical Mean-Field Theory (the TDDFT + DMFT approach). We proceed with deriving the expression for the XC kernel for the one-band Hubbard model by solving DMFT equations via two approaches, the Hirsch–Fye Quantum Monte Carlo (HF-QMC) and an approximate low-cost perturbation theory approach, and demonstrate that the latter gives results that are comparable to the exact HF-QMC solution. Furthermore, through a variety of applications, we propose a simple analytical formula for the XC kernel. Additionally, we use the exact and approximate kernels to examine the nonhomogeneous ultrafast response of two systems: a one-band Hubbard model and a Mott insulator YTiO 3 . We show that the frequency dependence of the kernel, i.e., memory effects, is important for dynamics at the femtosecond timescale. We also conclude that strong correlations lead to the presence of beats in the time-dependent electric conductivity in YTiO 3 , a feature that could be tested experimentally and that could help validate the few approximations used in our formulation. We conclude by proposing an algorithm for the generalization of the theory to non-linear response.
机译:我们介绍了我们最近提出的强相关材料的时变密度函数理论(TDDFT)的一些细节,其中交换相关(XC)核是从使用动态平均场理论(TDDFT)获得的电荷敏感性中得出的+ DMFT方法)。我们通过Hirsch–Fye量子蒙特卡罗(HF-QMC)和近似低成本的扰动理论方法两种方法求解DMFT方程,来推导单带Hubbard模型的XC核的表达式,并证明了该方法后者的结果可与确切的HF-QMC解决方案相媲美。此外,通过各种应用,我们为XC内核提出了一个简单的解析公式。此外,我们使用精确核和近似核来检查两个系统的非均质超快响应:一个单带Hubbard模型和一个Mott绝缘子YTiO 3。我们证明了内核的频率依赖性,即记忆效应,对于飞秒时标的动力学很重要。我们还得出结论,强相关性导致YTiO 3中随时间变化的电导率中存在节拍,这一特性可以通过实验进行测试,并且可以帮助验证我们的配方中使用的一些近似值。最后,我们提出了一种将理论推广到非线性响应的算法。

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