Benford's law in atomic spectra and opacity databases

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Main Authors: Pain, Jean-Christophe, Ralchenko, Yuri
Format: Preprint
Published: 2024
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author Pain, Jean-Christophe
Ralchenko, Yuri
author_facet Pain, Jean-Christophe
Ralchenko, Yuri
contents The intriguing law of anomalous numbers, also named Benford's law, states that the significant digits of data follow a logarithmic distribution favoring the smallest values. In this work, we test the compliance with this law of the atomic databases developed at the National Institute of Standards and Technology (NIST) focusing on line energies, oscillator strengths, Einstein coefficients and radiative opacities. The considered databases are the Atomic Spectra Database (ASD) and the NIST-LANL (Los Alamos National Laboratory) Lanthanide/Actinide Opacity Database. The present study is not limited to the first digit and the case of multipole lines is also considered. The fact that the law is verified with a high accuracy means that the occurrence of digits reflects the constraints induced, in a given angular-momentum coupling, by the selection rules for atomic processes. As a consequence, Benford's law may be of great interest to detect inconsistencies in atomic databases.
format Preprint
id arxiv_https___arxiv_org_abs_2405_19185
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Benford's law in atomic spectra and opacity databases
Pain, Jean-Christophe
Ralchenko, Yuri
Atomic Physics
The intriguing law of anomalous numbers, also named Benford's law, states that the significant digits of data follow a logarithmic distribution favoring the smallest values. In this work, we test the compliance with this law of the atomic databases developed at the National Institute of Standards and Technology (NIST) focusing on line energies, oscillator strengths, Einstein coefficients and radiative opacities. The considered databases are the Atomic Spectra Database (ASD) and the NIST-LANL (Los Alamos National Laboratory) Lanthanide/Actinide Opacity Database. The present study is not limited to the first digit and the case of multipole lines is also considered. The fact that the law is verified with a high accuracy means that the occurrence of digits reflects the constraints induced, in a given angular-momentum coupling, by the selection rules for atomic processes. As a consequence, Benford's law may be of great interest to detect inconsistencies in atomic databases.
title Benford's law in atomic spectra and opacity databases
topic Atomic Physics
url https://arxiv.org/abs/2405.19185