论文标题

静态基准的可传递性限制

The Transferability Limits of Static Benchmarks

论文作者

Weymuth, Thomas, Reiher, Markus

论文摘要

解决schrödinger方程进行相互作用的每种实用方法都会引入近似值。因此,这种方法会受到系统错误的困扰。对于计算化学,量化某些正在考虑的系统的特定误差是决定性的。传统上,这种错误评估的主要资源是基准测试结果,通常是从文献中获取的。但是,它们转移到特定的分子系统,因此,传统方法的可靠性在某种程度上始终不确定。在这种沟通中,我们通过以最大的量子化学基准组的示例来利用统计分析来详细说明这种传统的静态基准测试方式的缺点。根据选择为基准研究选择的参考证据的选择,我们证明了误差估计的不确定性。为了减轻静态基准测试的问题,我们主张依靠一种滚动和以系统为中心的方法来严格量化量子化学结果的不确定性。

Every practical method to solve the Schrödinger equation for interacting many-particle systems introduces approximations. Such methods are therefore plagued by systematic errors. For computational chemistry, it is decisive to quantify the specific error for some system under consideration. Traditionally, the primary resource for such an error assessment have been benchmarking results, usually taken from the literature. However, their transferability to a specific molecular system, and hence, the reliability of the traditional approach always remains uncertain to some degree. In this communication, we elaborate on the shortcomings of this traditional way of static benchmarking by exploiting statistical analyses at the example of one of the largest quantum chemical benchmark sets available. We demonstrate the uncertainty of error estimates in the light of the choice of reference data selected for a benchmark study. To alleviate the issues with static benchmarks, we advocate to rely instead on a rolling and system-focused approach for rigorously quantifying the uncertainty of a quantum chemical result.

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