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首页> 外文期刊>The Journal of Chemical Physics >Accelerating convergence to the thermodynamic limit with twist angle selection applied to methods beyond many-body perturbation theory
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Accelerating convergence to the thermodynamic limit with twist angle selection applied to methods beyond many-body perturbation theory

机译:用扭曲角度选择加速到热力学极限的收敛,应用于超出许多身体扰动理论的方法

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摘要

We recently developed a scheme to use low-cost calculations to find a single twist angle where the coupled cluster doubles energy of a single calculation matches the twist-averaged coupled cluster doubles energy in a finite unit cell. We used initiator full configuration interaction quantum Monte Carlo as an example of an exact method beyond coupled cluster doubles theory to show that this selected twist angle approach had comparable accuracy in methods beyond coupled cluster. Furthermore, at least for small system sizes, we show that the same twist angle can also be found by comparing the energy directly (at the level of second-order Moller-Plesset theory), suggesting a route toward twist angle selection, which requires minimal modification to existing codes that can perform twist averaging.
机译:我们最近开发了一个方案,使用低成本计算来找到一个单扭曲角,其中耦合团簇使单个计算的能量加倍,与有限单元中扭曲平均的耦合团簇使能量加倍相匹配。我们使用发起者全组态相互作用量子蒙特卡罗作为一个超越耦合团簇双倍理论的精确方法的例子,以表明这种选择的扭曲角方法在超越耦合团簇的方法中具有相当的精度。此外,至少对于较小的系统尺寸,我们表明,通过直接比较能量(在二阶Moller-Plesset理论的水平上)也可以找到相同的扭曲角,这表明了一种选择扭曲角的途径,这需要对现有代码进行最小的修改,可以执行扭曲平均。

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