The Mystery of Alpha and the Isotopes

Fuente: arXiv
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Autori principali: Webb, John K., Lee, Chung-Chi, Milakovic, Dinko, Flambaum, Victor V., Dzuba, Vladimir A., Magueijo, Joao
Natura: Preprint
Pubblicazione: 2023
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author Webb, John K.
Lee, Chung-Chi
Milakovic, Dinko
Flambaum, Victor V.
Dzuba, Vladimir A.
Magueijo, Joao
author_facet Webb, John K.
Lee, Chung-Chi
Milakovic, Dinko
Flambaum, Victor V.
Dzuba, Vladimir A.
Magueijo, Joao
contents We report unbiased AI measurements of the fine structure constant $α$ in two proximate absorption regions in the spectrum of the quasar HE0515$-$4414. The data are high resolution, high signal to noise, and laser frequency comb calibrated, obtained using the ESPRESSO spectrograph on the VLT. The high quality of the data and proximity of the regions motivate a differential comparison, exploring the possibility of spatial variations of fundamental constants, as predicted in some theories. We show that if the magnesium isotopic relative abundances are terrestrial, the fine structure constants in these two systems differ at the 7$σ$ level. A 3$σ$ discrepancy between the two measurements persists even for the extreme non-terrestrial case of 100\% $^{24}$Mg, if shared by both systems. However, if Mg isotopic abundances take independent values in these two proximate systems, one terrestrial, the other with no heavy isotopes, both can be reconciled with a terrestrial $α$, and the discrepancy between the two measurements falls to 2$σ$. We cannot rule out other systematics that are unaccounted for in our study that could masquerade as a varying alpha signal. We discuss varying constant and varying isotope interpretations and resolutions to this conundrum for future high precision measurements.
format Preprint
id arxiv_https___arxiv_org_abs_2401_00888
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle The Mystery of Alpha and the Isotopes
Webb, John K.
Lee, Chung-Chi
Milakovic, Dinko
Flambaum, Victor V.
Dzuba, Vladimir A.
Magueijo, Joao
Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
General Relativity and Quantum Cosmology
We report unbiased AI measurements of the fine structure constant $α$ in two proximate absorption regions in the spectrum of the quasar HE0515$-$4414. The data are high resolution, high signal to noise, and laser frequency comb calibrated, obtained using the ESPRESSO spectrograph on the VLT. The high quality of the data and proximity of the regions motivate a differential comparison, exploring the possibility of spatial variations of fundamental constants, as predicted in some theories. We show that if the magnesium isotopic relative abundances are terrestrial, the fine structure constants in these two systems differ at the 7$σ$ level. A 3$σ$ discrepancy between the two measurements persists even for the extreme non-terrestrial case of 100\% $^{24}$Mg, if shared by both systems. However, if Mg isotopic abundances take independent values in these two proximate systems, one terrestrial, the other with no heavy isotopes, both can be reconciled with a terrestrial $α$, and the discrepancy between the two measurements falls to 2$σ$. We cannot rule out other systematics that are unaccounted for in our study that could masquerade as a varying alpha signal. We discuss varying constant and varying isotope interpretations and resolutions to this conundrum for future high precision measurements.
title The Mystery of Alpha and the Isotopes
topic Cosmology and Nongalactic Astrophysics
Astrophysics of Galaxies
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2401.00888