Mirror Cosmological Relaxation of the Electroweak Scale
arXiv:1509.03583 · doi:10.1007/JHEP01(2016)063
Abstract
The cosmological relaxation mechanism proposed in [1] allows for a dynamically generated large separation between the weak scale and a theory cutoff, using a sharp change of theory behaviour upon crossing the limit between unbroken and broken symmetry phases. In this note we present a variation of this scenario, in which stabilization of the electroweak scale in the right place is ensured by the symmetry exchanging the Standard Model (SM) with its mirror copy. We sketch the possible ways to produce viable thermal evolution of the Universe and discuss experimental accessibility of the new physics effects. We show that in this scenario the mirror SM can either have sizeable couplings with the ordinary one, or, conversely, can interact with it with a negligible strength. The overall cutoff allowed by such a construction can reach GeV.
9 pages, 2 figures; version published in JHEP
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- Dynamics of Relaxed Inflation
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- Relaxation of the Composite Higgs Little Hierarchy
- Relaxion Cosmology and the Price of Fine-Tuning
- Naturalness of the relaxion mechanism
- Relaxion Dark Matter
- Constraints on the relaxion mechanism with strongly interacting vector-fermions
- Relaxion window
- A possible interpretation of the Higgs mass by the cosmological attractive relaxion
- A warped relaxion
- Cosmological Relaxation from Dark Fermion Production
- Light Higgs Boson from a Pole Attractor
- Gravitational tests of electroweak relaxation
- Hierarchies from Landscape Probability Gradients and Critical Boundaries
- Gravitational relaxation of electroweak hierarchy problem
- Mixing Particle Production for Relaxion Mechanism