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APS -APS March Meeting 2017 - Event - Diagrammatic Monte Carlo approach for diagrammatic extensions of dynamical mean-field theory -- convergence analysis of the dual fermion technique

机译:APS -APS 2017年3月会议-事件-动态平均场理论的图解扩展的图解蒙特卡洛方法-双费米子技术的收敛性分析

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摘要

The dual-fermion approach provides a formally exact prescription for calculating properties of a correlated electron system in terms of a diagrammatic expansion around dynamical mean-field theory (DMFT). It can address the full range of interactions, the lowest order theory is asymptotically exact in both the weak- and strong-coupling limits, and the technique naturally incorporates long-range correlations beyond the reach of current cluster extensions to DMFT. Most practical implementations, however, neglect higher-order interaction vertices beyond two-particle scattering in the dual effective action and further truncate the diagrammatic expansion in the two-particle scattering vertex to a leading-order or ladder-type approximation. In this work we compute the dual-fermion expansion for the Hubbard model including all diagram topologies with two-particle interactions to high orders by means of a stochastic diagrammatic Monte Carlo algorithm. Benchmarking against numerically exact Diagrammatic Determinant Monte Carlo simulations allows us to systematically assess convergence of the dual-fermion series and the validity of these approximations.
机译:围绕动态平均场理论(DMFT)的图解展开式,双费米子方法为计算相关电子系统的性质提供了形式上精确的处方。它可以解决所有范围的相互作用,最低阶理论在弱耦合和强耦合限制中都渐近精确,并且该技术自然地将远距离相关性纳入了当前集群扩展对DMFT的影响范围。但是,大多数实际实现在双重有效动作中忽略了两粒子散射之外的高阶交互作用顶点,并且进一步将两粒子散射顶点中的图解展开式截断为前导或梯形近似。在这项工作中,我们通过随机图解蒙特卡洛算法计算了Hubbard模型的双费密展开,包括所有具有两个粒子相互作用到高阶的图拓扑。通过对数值精确的图形行列式蒙特卡洛模拟进行基准测试,我们可以系统地评估双费米子级数的收敛性以及这些近似的有效性。

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