arXiv · 1501.05533
A constraint on a varying proton--electron mass ratio 1.5 billion years after the Big Bang
Abstract
A molecular hydrogen absorber at a lookback time of 12.4 billion years, corresponding to 10$\%$ of the age of the universe today, is analyzed to put a constraint on a varying proton--electron mass ratio, $μ$. A high resolution spectrum of the J1443$+$2724 quasar, which was observed with the Very Large Telescope, is used to create an accurate model of 89 Lyman and Werner band transitions whose relative frequencies are sensitive to $μ$, yielding a limit on the relative deviation from the current laboratory value of $Δμ/μ=(-9.5\pm5.4_{\textrm{stat}} \pm 5.3_{\textrm{sys}})\times 10^{-6}$.
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J. Bagdonaite, W. Ubachs, M. T. Murphy, J. B. Whitmore. 2015-01-22. A constraint on a varying proton--electron mass ratio 1.5 billion years after the Big Bang. https://doi.org/10.1103/physrevlett.114.071301
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