A limit on variations in the fine-structure constant from spectra of nearby Sun-like stars
arXiv:2211.05150 · doi:10.1126/science.abi9232
Abstract
The fine structure constant, , sets the strength of the electromagnetic force. The Standard Model of particle physics provides no explanation for its value, which could potentially vary. The wavelengths of stellar absorption lines depend on , but are subject to systematic effects owing to astrophysical processes in stellar atmospheres. We measured precise line wavelengths using 17 stars, selected to have almost identical atmospheric properties to those of the Sun (solar twins), which reduces those systematic effects. We found that varies by 50 parts-per-billion (ppb) within 50 parsecs from Earth. Combining the results from all 17 stars provides an empirical, local reference for stellar measurements of with an ensemble precision of 12 ppb.
33 pages, 6 figures. Published in Science (11 November 2022). This is the accepted version which includes 20 pages of Supplementary Materials
References in corpus (12)
- New constraints on the chemical evolution of the solar neighbourhood and Galactic disc(s). Improved astrophysical parameters for the Geneva-Copenhagen Survey
- Improved limits for violations of local position invariance from atomic clock comparisons
- High-precision limit on variation in the fine-structure constant from a single quasar absorption system
- 'Ultimate' Information Content in Solar and Stellar Spectra: Photospheric line asymmetries and wavelength shifts
- Search for a Variation of the Fine Structure around the Supermassive Black Hole in Our Galactic Center
- Subaru Telescope limits on cosmological variations in the fine-structure constant
- Fundamental physics with ESPRESSO: Precise limit on variations in the fine-structure constant towards the bright quasar HE 05154414
- The solar gravitational redshift from HARPS-LFC Moon spectra. A test of the General Theory of Relativity
- Precision and consistency of astrocombs
- Probing Galactic variations in the fine-structure constant using solar twin stars: systematic errors
- Relativistic frequency shifts in Cr, Ti, Fe, Ni, Ca, Na, and V to search for variation in the fine structure constant
- Probing Galactic variations in the fine-structure constant using solar twin stars: methodology and results
Cited by in corpus (6)
- Probing Galactic variations in the fine-structure constant using solar twin stars: systematic errors
- Solar Photospheric Spectrum Microvariability I. Theoretical searches for proxies of radial-velocity jittering
- Survey for Distant Solar Twins (SDST) -- III. Identification of new solar twin and solar analogue stars
- Measuring the Time Variation of the Fine-structure Constant with Quasars Detected by LAMOST
- The fine structure constant: a review of measurement results and possible space-time variations
- A revised comparison of distant and nearby solar twins