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Gravitational transitions via the explicitly broken symmetron screening mechanism

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arxiv 2203.10374 v1 pith:BNDS3ZBF submitted 2022-03-19 astro-ph.CO gr-qchep-phhep-th

classification astro-ph.COgr-qchep-phhep-th
keywords fracgravitationalmattersymmetronsymmetrybreakingexplicitmechanism
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abstract

We generalize the symmetron screening mechanism by allowing for an explicit symmetry breaking of the symmetron $\phi^4$ potential. A coupling to matter of the form $A(\phi)=1+\frac{\phi^2}{M^2}$ leads to an explicitly broken symmetry with effective potential $V_{eff}(\phi)=-\mu^2 (1-\frac{\rho}{\mu^2 M^2})\phi^2 +\frac{\lambda}{2}\phi^4 + 2 \varepsilon \phi^3+\frac{\lambda}{2}\eta^4$. Due to the explicit symmetry breaking induced by the cubic term we call this field the 'asymmetron'. For large matter density $\rho>\rho_*\equiv \mu^2M^2+\frac{9}{4}\varepsilon\eta M^2$ the effective potential has a single minimum at $\phi=0$ leading to restoration of General Relativity as in the usual symmetron screening mechanism. For low matter density however, there is a false vacuum and a single true vacuum due to the explicit symmetry breaking. This is expected to lead to an unstable network of domain walls with slightly different value of the gravitational constant $G$ on each side of the wall. This network would be in constant interaction with matter overdensities and would lead to interesting observational signatures which could be detected as gravitational and expansion rate transitions in redshift space. Such a gravitational transition has been recently proposed for the resolution of the Hubble tension.

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Cited by 2 Pith papers

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  2. Alleviating the Hubble Tension with a Local Void and Transitions of the Absolute Magnitude

    astro-ph.CO 2025-04 conditional novelty 5.0 of 10

    Deep LTB void models with two or three distance-dependent jumps in the supernova absolute magnitude fit Pantheon+ and Planck data well and push the inferred local Hubble constant toward the SH0ES value.

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