[CI], [CII] and CO emission lines as a probe for alpha variations at low and high redshifts
arXiv:1707.03760 · doi:10.1093/mnras/stx1782
Abstract
The offsets between the radial velocities of the rotational transitions of carbon monoxide and the fine structure transitions of neutral and singly ionized carbon are used to test the hypothetical variation of the fine structure constant, alpha. From the analysis of the [CI] and [CII] fine structure lines and low J rotational lines of 12CO and 13CO, emitted by the dark cloud L1599B in the Milky Way disk, we find no evidence for fractional changes in alpha at the level of || < 3*10^-7. For the neighbour galaxy M33 a stringent limit on Delta alpha/alpha is set from observations of three HII zones in [CII] and CO emission lines: || < 4*10^-7. Five systems over the redshift interval z = 5.7-6.4, showing CO J=6-5, J=7-6 and [CII] emission, yield a limit on || < 1.3*10^-5. Thus, a combination of the [CI], [CII], and CO emission lines turns out to be a powerful tool for probing the stability of the fundamental physical constants over a wide range of redshifts not accessible to optical spectral measurements.
10 pages, 3 figures, 5 tables. Accepted for publication in MNRAS
References in corpus (21)
- Systematic evaluation of an atomic clock at 2e-18 total uncertainty
- Frequency ratio of two optical clock transitions in Yb and constraints on the time-variation of fundamental constants
- Spatial variation in the fine-structure constant -- new results from VLT/UVES
- A Kiloparsec-Scale Hyper-Starburst in a Quasar Host Less than 1 Gigayear after the Big Bang
- Star formation and the interstellar medium in z>6 UV-luminous Lyman-break galaxies
- Star formation rate and dynamical mass of 10^8 solar mass black hole host galaxies at redshift 6
- The compact, ~1 kpc host galaxy of a quasar at z=7.1
- ALMA [CII] detection of a redshift 7 lensed galaxy behind RXJ1347.1-1145
- High-precision limit on variation in the fine-structure constant from a single quasar absorption system
- The UVES Large Program for testing fundamental physics - III. Constraints on the fine-structure constant from 3 telescopes
- Variation of fundamental constants: theory and observations
- Constraints on changes in the proton-electron mass ratio using methanol lines
- A new approach for testing variations of fundamental constants over cosmic epochs using FIR fine-structure lines
- The Local [CII] 158 um Emission Line Luminosity Function
- A constraint on a varying proton--electron mass ratio 1.5 billion years after the Big Bang
- Stability of fundamental couplings: a global analysis
- Mid- and far-infrared fine-structure line sensitivities to hypothetical variability of the fine-structure constant
- Fundamental Constant Observational Bounds on the Variability of the QCD Scale
- Constraint on a varying proton-to-electron mass ratio from H2 and HD absorption at z = 2.34
- Analysis of carbon monoxied absorption at z=2.5 to constrain variation of the proton-to-electron mass ratio
- Methanol absorption in PKS B1830-211 at milliarcsecond scales
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- Critically Evaluated Spectral Data for Singly Ionized Carbon (C II)
- Refining fundamental constants with white dwarfs: machine learning informed constraints on fine-structure constant and proton-to-electron mass ratio
- Varying fundamental constants cosmography