论文标题
BUQEYE核物理基于投影的模拟器指南
BUQEYE Guide to Projection-Based Emulators in Nuclear Physics
论文作者
论文摘要
Buqeye合作(贝叶斯不确定性量化:EFT中的错误)提出了针对低能核物理学应用的基于投影的,减少阶的模拟器的教学介绍。术语模拟器在此指的是能够可靠近似高保真模型的快速替代模型。由于这些模拟器使用的一般工具尚未在核物理学界众所周知,因此我们讨论了变分和盖尔金投影方法,强调离线在线分解的好处,并探索这些概念如何为使用许多不同模型参数集启用快速和准确计算的界限和散射系统提供模拟和散射系统。我们还指出了这些模拟物理学的未来扩展和应用,并在模型(顺序)减少的成熟领域为指导。这里讨论的所有示例以及更多示例可作为交互式,开源Python代码可用,因此从业者可以轻松地将基于投影的模拟器适应自己的工作。
The BUQEYE collaboration (Bayesian Uncertainty Quantification: Errors in Your EFT) presents a pedagogical introduction to projection-based, reduced-order emulators for applications in low-energy nuclear physics. The term emulator refers here to a fast surrogate model capable of reliably approximating high-fidelity models. As the general tools employed by these emulators are not yet well-known in the nuclear physics community, we discuss variational and Galerkin projection methods, emphasize the benefits of offline-online decompositions, and explore how these concepts lead to emulators for bound and scattering systems that enable fast & accurate calculations using many different model parameter sets. We also point to future extensions and applications of these emulators for nuclear physics, guided by the mature field of model (order) reduction. All examples discussed here and more are available as interactive, open-source Python code so that practitioners can readily adapt projection-based emulators for their own work.