Limits on the spatial variations of the electron-to-proton mass ratio in the Galactic plane
arXiv:1310.1850 · doi:10.1051/0004-6361/201322535
Abstract
Aims. To validate the Einstein equivalence principle (local position invariance) by limiting the fractional changes in the electron-to-proton mass ratio, mu = m_e/m_p, measured in Galactic plane objects. Methods. High resolution spectral observations of dark clouds in the inversion line of NH3(1,1) and pure rotational lines of other molecules (the so-called ammonia method) were performed at the Medicina 32-m and the Effelsberg 100-m radio telescopes to measure the radial velocity offsets, Delta RV = V_rot - V_inv, between the rotational and inversion transitions which have different sensitivities to the value of mu. Results. In our previous observations (2008-2010), a mean offset of <Delta RV> = 0.027+/-0.010 km/s [3 sigma confidence level (C.L.)] was measured. To test for possible hidden errors, we carried out additional observations of a sample of molecular cores in 2010-2013. As a result, a systematic error in the radial velocities of an amplitude ~0.02 km/s was revealed. The averaged offset between the radial velocities of the rotational transitions of HC3N(2-1), HC5N(9-8), HC7N(16-15), HC7N(21-20), and HC7N(23-22), and the inversion transition of NH3(1,1) <Delta RV> = 0.003+/-0.018 km/s (3 sigma C.L.). This value, when interpreted in terms of Delta mu/mu= (mu_obs - mu_lab)/mu_lab, constraints the mu-variation at the level of Delta mu/mu < 2*10^{-8} (3 sigma C.L.), which is the most stringent limit on the fractional changes in mu based on astronomical observations.
10 pages, 7 figures, 2 tables. Accepted for publication in Astron. Astrophys
References in corpus (3)
Cited by in corpus (19)
- Search for New Physics with Atoms and Molecules
- ESPRESSO@VLT -- On-sky performance and first results
- The status of varying constants: a review of the physics, searches and implications
- Fundamental cosmology in the E-ELT era: The status and future role of tests of fundamental coupling stability
- Testing the variability of the proton-to-electron mass ratio from observations of methanol in the dark cloud core L1498
- Accurate Prediction of the Ammonia Probes of a Variable Proton-to-Electron Mass Ratio
- Testing the weak equivalence principle by differential measurements of fundamental constants in the Magellanic Clouds
- Current and future constraints on extended Bekenstein-type models for a varying fine-structure constant
- An Environmental Variation of Constants
- Constraints on the electron-to-proton mass ratio variation at the epoch of reionization
- Enhanced sensitivity to a possible variation of the proton-to-electron mass ratio in ammonia
- Star-forming regions of the Aquila rift cloud complex. II. Turbulence in molecular cores probed by NH3 emission
- Methanol isotopologues as a probe for spatial and temporal variations of the electron-to-proton mass ratio
- [CI], [CII] and CO emission lines as a probe for alpha variations at low and high redshifts
- Astrophysical constraints on the proton-to-electron mass ratio with FAST
- Probing the electron-to-proton mass ratio gradient in the Milky Way with class I methanol masers
- A rotating helical filament in the L1251 dark cloud
- On the Stability of Fundamental Couplings in the Galaxy
- Fundamental physical constants at low and high redshifts