Microwave and submillimeter molecular transitions and their dependence on fundamental constants
arXiv:1304.4510 · doi:10.1002/andp.201300010
Abstract
Microwave and submillimeter molecular transition frequencies between nearly degenerated rotational levels, tunneling transitions, and mixed tunneling-rotational transitions show an extremely high sensitivity to the values of the fine-structure constant, alpha, and the electron-to-proton mass ratio, mu. This review summarizes the theoretical background on quantum-mechanical calculations of the sensitivity coefficients of such transitions to tiny changes in alpha and mu for a number of molecules which are usually observed in Galactic and extragalactic sources, and discusses the possibility of testing the space- and time-invariance of fundamental constants through comparison between precise laboratory measurements of the molecular rest frequencies and their astronomical counterparts. In particular, diatomic radicals CH, OH, NH+, and a linear polyatomic radical C3H in Pi electronic ground state, polyatomic molecules NH3, ND3, NH2D, NHD2, H2O2, H3O+, CH3OH, and CH3NH2 in their tunneling and tunneling-rotational modes are considered. It is shown that sensitivity coefficients strongly depend on the quantum numbers of the corresponding transitions. This can be used for astrophysical tests of Einstein's Equivalence Principle all over the Universe at an unprecedented level of sensitivity of ~10^-9, which is a limit three to two orders of magnitude lower as compared to the current constraints on cosmological variations of alpha and mu: Delta alpha/alpha < 10^-6, Delta mu/mu < 10^-7.
29 pages, 8 figures, 8 tables; Annalen der Physik (in press)
References in corpus (25)
- Flavour physics of leptons and dipole moments
- New Limits on Coupling of Fundamental Constants to Gravity Using Sr Optical Lattice Clocks
- Stability of the proton-to-electron mass ratio
- Enhanced sensitivity to time-variation of m_p/m_e in the inversion spectrum of ammonia
- Ultracold molecules: new probes on the variation of fundamental constants
- Detection of interstellar hydrogen peroxide
- Limit on the Temporal Variation of the Fine-Structure Constant Using Atomic Dysprosium
- Nitrogen hydrides in interstellar gas II. Analysis of Herschel/HIFI observations towards W49N and G10.6-0.4 (W31C)
- Bounds on the fine structure constant variability from FeII absorption lines in QSO spectra
- The spectrum of Fe II
- Variation of fundamental constants: theory and observations
- The CO A-X System for Constraining Cosmological Drift of the Proton-Electron Mass Ratio
- -doublet spectra of diatomic radicals and their dependence on fundamental constants
- A new approach for testing variations of fundamental constants over cosmic epochs using FIR fine-structure lines
- Early Universe Constraints on Time Variation of Fundamental Constants
- Transition frequency shifts with fine structure constant variation for Fe II: Breit and core-valence correlation correction
- Varying couplings in the early universe: correlated variations of and
- Variations in the Fundamental constants in the QSO Host J1148+5251 at z = 6.4 and the BR1202-0725 System at z = 4.7
- Probing unification scenarios with atomic clocks
- Sensitivity of the H3O+ inversion-rotational spectrum to changes in m_e/m_p
- Linear polyatomic molecules with Π ground state: sensitivity to variation of the fundamental constants
- Mid- and far-infrared fine-structure line sensitivities to hypothetical variability of the fine-structure constant
- The Fundamental Constants in Physics
- Sensitivity of the isotopologues of hydronium to variation of the electron-to-proton mass ratio
- Fluctuations of the intergalactic ionization field at redshift z ~ 2
Cited by in corpus (31)
- Search for New Physics with Atoms and Molecules
- Highly charged ions: optical clocks and applications in fundamental physics
- The status of varying constants: a review of the physics, searches and implications
- Polyatomic Molecules as Quantum Sensors for Fundamental Physics
- Perspective: Tipping the scales - search for drifting constants from molecular spectra
- Molecular Asymmetry and Optical Cycling: Laser Cooling Asymmetric Top Molecules
- CO/H2, C/CO, OH/CO, and OH/O2 in Dense Interstellar Gas: From High Ionization to Low Metallicity
- Searches for topological defect dark matter via non-gravitational signatures
- Enhanced Sensitivity to Ultralight Bosonic Dark Matter in the Spectra of the Linear Radical SrOH
- H2+ and HD+: candidates for a molecular clock
- Search for a drifting proton--electron mass ratio from H
- Evolution of the fine-structure constant in runaway dilaton models
- Radiation Pressure Force from Optical Cycling on a Polyatomic Molecule
- Stability of fundamental couplings: a global analysis
- Limits on the spatial variations of the electron-to-proton mass ratio in the Galactic plane
- Material Size Dependence on Fundamental Constants
- Search for variation of fundamental constants: Strong enhancements in cations of dihalogens and hydrogen halides
- New Atomic probes for Dark Matter detection: Axions, Axion-like particles and Topological Defects
- Search for varying constants of nature from astronomical observation of molecules
- Testing the weak equivalence principle by differential measurements of fundamental constants in the Magellanic Clouds
- Enhanced effects of temporal variation of the fundamental constants in ^{2}Π_{1/2} term diatomic molecules: ^{207}Pb^{19}F
- Constraint on a varying proton-to-electron mass ratio from H2 and HD absorption at z = 2.34
- Constraints on the electron-to-proton mass ratio variation at the epoch of reionization
- Further consistency tests of the stability of fundamental couplings
- Methanol isotopologues as a probe for spatial and temporal variations of the electron-to-proton mass ratio
- Diatomic rovibronic transitions as potential probes for proton-to-electron mass ratio across cosmological time
- [CI], [CII] and CO emission lines as a probe for alpha variations at low and high redshifts
- Probing the electron-to-proton mass ratio gradient in the Milky Way with class I methanol masers
- Astrophysical and local constraints on string theory: runaway dilaton models
- Axion Bounds from Quantum Technology
- Sensitivity coefficients to -variation for astrophysically relevant transitions in Ni II