Scalar field couplings to quadratic curvature and decay into gravitons
arXiv:2112.12774 · doi:10.1007/JHEP05(2022)087
Abstract
Any field, even if it lives in a completely hidden sector, interacts with the visible sector at least via the gravitational interaction. In this paper, we show that a scalar field in such a hidden sector generically couples to the quadratic curvature via dimension five operators, i.e., , , , , because they can emerge if there exist particles heavier than it. We derive these scalar couplings to the quadratic curvature by integrating out heavy particles in a systematic manner. Such couplings are of phenomenological interest since some of them induce the scalar decay into the graviton pair. We point out that the decay of a scalar field can produce a substantial amount of the stochastic cosmic graviton background at high frequency since the suppression scale of these operators is given by the mass of heavy particles not by the Planck scale. The resultant graviton spectrum is computed in some concrete models.
30 pages, 2 figures; to appear in JHEP
References in corpus (22)
- The Unity of Cosmological Attractors
- Challenges and Opportunities of Gravitational Wave Searches at MHz to GHz Frequencies
- Flaxion: a minimal extension to solve puzzles in the standard model
- Gravitational production of vector dark matter
- Gravitational Production of Dark Matter during Reheating
- Topological field theory and thermal responses of interacting topological superconductors
- Completely Dark Photons from Gravitational Particle Production During Inflation
- Gravitational Waves as a Big Bang Thermometer
- Gravitational Effects on Inflaton Decay
- On Thermal Gravitational Contribution to Particle Production and Dark Matter
- Gravitational wave background from Standard Model physics: Complete leading order
- Chiral Anomaly, Schwinger Effect, Euler-Heisenberg Lagrangian, and application to axion inflation
- Superheavy scalar dark matter from gravitational particle production in -attractor models of inflation
- Gravitational production of scalar dark matter
- A formalism for magnon gravitational wave detectors
- Gravitational dark matter production in Palatini preheating
- Gravitational production of nearly thermal fermionic Dark Matter
- Leptogenesis from Pseudo-Scalar Driven Inflation
- Renormalization in gravitational leptogenesis with pseudo-scalar-tensor coupling
- Computation of Gravitational Particle Production Using Adiabatic Invariants
- Detection of Gravitational Waves using Parametric Resonance in Bose-Einstein Condensates
- The Higgs-Graviton Couplings: from Amplitudes to the Action
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