Searching for new physics using high precision absorption spectroscopy; continuum placement uncertainties and the fine structure constant in strong gravity
Chung-Chi Lee, John K. Webb, Darren Dougan, Vladimir A. Dzuba, Victor, V. Flambaum, Dinko Milakovi\'c

TL;DR
This study highlights how continuum placement errors can significantly affect measurements of the fine structure constant in white dwarf spectra, emphasizing the need to include this source of uncertainty in future analyses.
Contribution
Developed an automated continuum estimation method and demonstrated its impact on fine structure constant measurements in high-resolution white dwarf spectra.
Findings
Continuum placement errors cause systematic shifts in absorption line centroids.
These shifts significantly influence measurements of the fine structure constant.
The effect should be considered in future spectroscopic studies of fundamental constants.
Abstract
Searches for variations of fundamental constants require a comprehensive understanding of measurement errors. This paper examines a source of error that is usually overlooked: the impact of continuum placement error. We investigate the problem using a high resolution, high signal to noise spectrum of the white dwarf G191B2B. Narrow photospheric absorption lines allow us to search for new physics in the presence of a gravitational field approximately times that on Earth. Modelling photospheric lines requires knowing the underlying spectral continuum level. We describe the development of a fully automated, objective, and reproducible continuum estimation method. Measurements of the fine structure constant are produced using several continuum models. The results show that continuum placement variations result in small systematic shifts in the centroids of narrow photospheric…
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Taxonomy
TopicsCosmology and Gravitation Theories · Relativity and Gravitational Theory · Black Holes and Theoretical Physics
