The Invisible Dilaton
arXiv:2303.14469 · doi:10.1103/PhysRevD.107.095015
Abstract
We analyse the dynamics of a light scalar field responsible for the term of the Higgs potential and coupled to matter via the Higgs-portal mechanism. We find that this dilaton model is stable under radiative corrections induced by the standard model particle masses. When the background value of the scalar field is stabilised at the minimum of the scalar potential, the scalar field fluctuations only couple quadratically to the massive fields of the standard model preventing the scalar direct decay into standard model particles. Cosmologically and prior to the electroweak symmetry breaking, the scalar field rolls down along its effective potential before eventually oscillating and settling down at the electroweak minimum. These oscillations can be at the origin of dark matter due to the initial misalignment of the scalar field compared to the electroweak minimum, and we find that, when the mass of the scalar field is less than the eV scale and acts as a condensate behaving like dark matter on large scales, the scalar particles cannot thermalise with the standard model thermal bath. As matter couples in a composition-dependent manner to the oscillating scalar, this could lead to a violation of the equivalence principle aboard satellites such as the MICROSCOPE experiment and the next generation of tests of the equivalence principle. Local gravitational tests are evaded thanks to the weakness of the quadratic coupling in the dark matter halo, and we find that, around other sources, these dilaton models could be subject to a screening akin to the symmetron mechanism.
36 pages, 3 figures
References in corpus (13)
- Ultralight scalars as cosmological dark matter
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- Cosmic Structure as the Quantum Interference of a Coherent Dark Wave
- A search for ultra-light axions using precision cosmological data
- Searching for dilaton dark matter with atomic clocks
- Light scalar at LHC: the Higgs or the dilaton?
- Axion as a Cold Dark Matter candidate
- Dynamical and Gravitational Instability of Oscillating-Field Dark Energy and Dark Matter
- Phenomenology of the Equivalence Principle with Light Scalars
- Anomalous coupling of scalars to gauge fields
- Quantum Corrections to the Cosmological Evolution of Conformally Coupled Fields
- Perturbations of ultralight vector field dark matter
- Dark Energy and the MSSM