Constraining the variation of fundamental constants at z ~ 1.3 using 21-cm absorbers
H. Rahmani, R. Srianand, N. Gupta, P. Petitjean, P. Noterdaeme, and D., Albornoz Vasquez

TL;DR
This study uses high-resolution spectra and 21-cm absorption data from quasars at z ~ 1.3 to place the most stringent constraints yet on the variation of fundamental constants over the past 9 billion years.
Contribution
It provides the tightest limits to date on the variation of alpha, mu, and x at redshift ~1.3 using combined optical and radio observations of 21-cm absorbers.
Findings
No significant variation in x, alpha, or mu detected.
Constraints are more stringent than previous methods.
Results support the constancy of fundamental constants over 9 Gyr.
Abstract
We present high resolution optical spectra obtained with the Ultraviolet and Visual Echelle Spectrograph (UVES) at the Very Large Telescope (VLT) and 21-cm absorption spectra obtained with the Giant Metrewave Radio Telescope (GMRT) and the Green Bank Telescope (GBT) of five quasars along the line of sight of which 21-cm absorption systems at 1.17 < z < 1.56 have been detected previously. We also present milliarcsec scale radio images of these quasars obtained with the Very Large Baseline Array (VLBA). We use the data on four of these systems to constrain the time variation of x = g_p*alpha^2/mu where g_p is the proton gyromagnetic factor, alpha is the fine structure constant, and mu is the proton-to-electron mass ratio. We carefully evaluate the systematic uncertainties in redshift measurements using cross-correlation analysis and repeated Voigt profile fitting. In two cases we also…
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