arXiv · astro-ph/9507062
Astrophysical Limits on the Evolution of Dimensionless Physical Constants over Cosmological Time
Abstract
We report new upper limits on any possible long-term time variation of the ratio of the electron to proton masses, $(m_e/m_p)$, the fine-structure constant, ($α$), and the quantity $α^2 g_p(m_e/m_p)$, where $g_p$ is the proton gyromagnetic ratio. These limits are based on extremely high precision observations of H$_2$, Si$^{3+}$, C$^0$ and H$^0$ in high-redshift quasar absorption lines. They amount to 95\% confidence ranges of $(-7.6\to 9.7) \times 10^{-14}$ yr$^{-1}$ for ($m_e/m_p$), $(-4.6\to 4.2)\times 10^{-14}$ yr$^{-1}$ for $α$\ and $(-2.2\to 4.2) \times 10^{-15}$ yr$^{-1}$ for $α^2 g_p(m_e/m_p)$, where the elapsed time has been computed for a cosmology with \hnought = 75 km s$^{-1}$ Mpc$^{-1}$ and \qnought = 0.5.
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Lennox L. Cowie, Antoinette Songaila. 1995-07-16. Astrophysical Limits on the Evolution of Dimensionless Physical Constants over Cosmological Time. https://doi.org/10.1086/176422
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