Galaxy cluster constraints on the coupling to photons of low-mass scalars
arXiv:1505.01020 · doi:10.1103/PhysRevD.92.083501
Abstract
We consider a broad class of interactions between radiation and a light scalar field, including both conformal and disformal couplings. Such a scalar field potentially acts on cosmological scales as dark energy and could also appear in modified gravity theories. We study the consequences of these couplings on the mixing between the scalar field and photons in galaxy clusters in the presence of a magnetic field. In particular we focus on the resulting turbulence-induced irregularities in the X-ray and UV bands. We find new bounds on the photon-to-scalar couplings, both conformal and disformal, which complement laboratory experiments and other astrophysical constraints.
17 pages, 10 figures
References in corpus (11)
- Dynamics of dark energy
- The Confrontation between General Relativity and Experiment
- New PVLAS results and limits on magnetically induced optical rotation and ellipticity in vacuum
- Screening Modifications of Gravity through Disformally Coupled Fields
- Signatures of axion-like particles in the spectra of TeV gamma-ray sources
- Structures of the magnetoionic media around the FR I radio galaxies 3C 31 and Hydra A
- Disformal couplings and the dark sector of the universe
- Constraining Disformally Coupled Scalar Fields
- The UVES Large Program for testing fundamental physics - III. Constraints on the fine-structure constant from 3 telescopes
- Irregularity in gamma ray source spectra as a signature of axionlike particles
- Anomalous coupling of scalars to gauge fields
Cited by in corpus (5)
- Direct detection of dark energy: the XENON1T excess and future prospects
- Constraints on Axion-Like Particles from X-ray Observations of NGC1275
- Constraints on Axion-Like Particles from Non-Observation of Spectral Modulations for X-ray Point Sources
- Disformal Gravity Theories: A Jordan Frame Analysis
- Signatures of Solar Chameleons in the Earth's Magnetic Field