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ASTROPHYSICS AND COSMOLOGY
Torsion-rotational transitions in methanol as a probe of fundamental physical constants–electron and proton masses
J. S. Vorotyntseva, S. A. Levshakov Ioffe Institute, St. Petersburg, 194021 Russia
Abstract:
We report on the using of torsion-rotational transitions in the CH$_3$OH and $^{13}$CH$_3$OH molecules to evaluate possible variations of the electron-to-proton mass ratio $\mu = m_e/m_\rho$ from spectral observations of emission lines detected in the microwave range towards the dense molecular cloud Orion-KL. An estimate of the upper limit on the relative changes in $\mu$ is obtained by two independent ways with 13CH3OH lines and with the combination of $^{13}$CH$_3$OH and CH$_3$OH lines. The calculated upper limit $\Delta\mu/\mu<1.1\times10^{-8}(1\sigma)$ is in line with the most stringent constraints on the variability of fundamental physical constants established by other astrophysical methods.
Received: 26.03.2024 Revised: 26.03.2024 Accepted: 01.04.2024
Citation:
J. S. Vorotyntseva, S. A. Levshakov, “Torsion-rotational transitions in methanol as a probe of fundamental physical constants–electron and proton masses”, Pis'ma v Zh. Èksper. Teoret. Fiz., 119:9 (2024), 635–637; JETP Letters, 119:9 (2024), 649–651
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https://www.mathnet.ru/eng/jetpl7212 https://www.mathnet.ru/eng/jetpl/v119/i9/p635
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Abstract page: | 34 | References: | 14 | First page: | 8 |
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