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Bayesian truncation errors in chiral effective field theory: Nucleon-nucleon observables

机译:手性有效场理论中贝叶斯截断误差:核仁核心可观察

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摘要

Chiral effective field theory (EFT) predictions are necessarily truncated at some order in the EFT expansion, which induces an error that must be quantified for robust statistical comparisons to experiment. In previouswork, a Bayesian model for truncation errors of perturbative expansions was adapted to EFTs. The model yields posterior probability distribution functions (pdfs) for these errors based on expectations of naturalness encoded in Bayesian priors and the observed order-by-order convergence pattern of the EFT. A first application was made to chiral EFT for neutron-proton scattering using the semilocal potentials of Epelbaum, Krebs, andMeissner (EKM). Here we extend this application to consider a larger set of regulator parameters, energies, and observables as a general example of a statistical approach to truncation errors. The Bayesian approach allows for statistical validations of the assumptions and enables the calculation of posterior pdfs for the EFT breakdown scale. The statistical model is validated for EKM potentials whose convergence behavior is not distorted by regulator artifacts. For these cases, the posterior for the breakdown scale is consistent with EKM assumptions.
机译:手表有效的场理论(EFT)预测必须在EFT扩展中以某种顺序截断,这引起了必须量化的误差以用于实验的鲁棒统计比较。在以前的工作中,扰动扩展截断误差的贝叶斯模型适应EFTS。该模型基于对贝叶斯前沿编码的自然度的预期和EFT的观察到的阶级收敛模式的预期产生这些误差的后验概率分布函数(PDF)。使用Epelbaum,Krebs,Andmeissner(EKM)的半焦点,对中子质子散射进行手性EFT进行手性EFT。在这里,我们将此应用程序扩展以考虑更大的调节器参数,能量和可观察到作为截断误差的统计方法的一般例子。贝叶斯方法允许对假设的统计验证验证,并能够计算EFT击穿比例的后部PDF。统计模型被验证为EKM潜力,其收敛行为不会被调节器伪影扭曲。对于这些情况,击穿比例的后部与EKM假设一致。

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  • 来源
    《Physical Review C》 |2017年第2017期|024003.1-024003.22|共22页
  • 作者单位

    Department of Physics The Ohio State University Columbus Ohio 43210 USA;

    Department of Physics The Ohio State University Columbus Ohio 43210 USA;

    Department of Physics The Ohio State University Columbus Ohio 43210 USA;

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