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Preconditioning and Perturbative Estimators in Full Configuration Interaction Quantum Monte Carlo

机译:完整配置互动量子蒙特卡罗的预处理和扰动估计

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摘要

We propose the use of preconditioning in FCIQMC which, in combination with perturbative estimators, greatly increases the efficiency of the algorithm. The use of preconditioning allows a time step close to unity to be used (without time-step errors), provided that multiple spawning attempts are made per walker. We show that this approach substantially reduces statistical noise on perturbative corrections to initiator error, which improve the accuracy of FCIQMC but which can suffer from significant noise in the original scheme. Therefore, the use of preconditioning and perturbatively corrected estimators in combination leads to a significantly more efficient algorithm. In addition, a simpler approach to sampling variational and perturbative estimators in FCIQMC is presented, which also allows the variance of the energy to be calculated. These developments are investigated and applied to benzene (30e, 108o), an example where accurate treatment is not possible with the original method.
机译:我们提出在FCIQMC中使用预处理,其与扰动估计器相结合,大大提高了算法的效率。 前提条件允许接近统一的时间步骤(没有时间步骤错误),只要多次产卵尝试是每次步行者进行的。 我们表明该方法大大降低了对发起误差扰动校正的统计噪声,这提高了FCIQMC的准确性,但这可能遭受原始方案中的显着噪声。 因此,使用预处理和扰动校正估计器的组合导致显着更有效的算法。 此外,提出了一种更简单的采样变分和扰动估计在FCIQMC中的方法,这也允许计算能量的方差。 研究这些发育并施加到苯(30e,108o)上,是原始方法不可能进行准确治疗的实例。

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