论文标题
原子光谱的网络方法
A Network Approach to Atomic Spectra
论文作者
论文摘要
网络科学提供了一个通用框架来建模复杂系统,并将其与物理中通常采用的还原主义方法对比。在一项原型研究中,我们利用了从原子的光谱数据创建的网络模型来预测基础物理系统的微观特性。对于诸如氦气之类的简单原子,对光谱网络社区的后验检查揭示了量子数和对称性的出现。对于更复杂的原子,例如or,更细的网络层次结构建议其他显微镜对称性或配置。链接预测得出了未知原子过渡的定量排名,从而提供了以良好的控制方式发现新光谱线的机会。我们的工作促进了网络科学与物理学之间的方法论的真正双向交流,并为原子光谱研究提供了新的观点。
Network science provides a universal framework for modeling complex systems, contrasting the reductionist approach generally adopted in physics. In a prototypical study, we utilize network models created from spectroscopic data of atoms to predict microscopic properties of the underlying physical system. For simple atoms such as helium, an a posteriori inspection of spectroscopic network communities reveals the emergence of quantum numbers and symmetries. For more complex atoms such as thorium, finer network hierarchies suggest additional microscopic symmetries or configurations. Link prediction yields a quantitative ranking of yet unknown atomic transitions, offering opportunities to discover new spectral lines in a well-controlled manner. Our work promotes a genuine bi-directional exchange of methodology between network science and physics, and presents new perspectives for the study of atomic spectra.