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arxiv: 1304.5239 · v2 · pith:RV6DLQAZnew · submitted 2013-04-18 · 🌌 astro-ph.CO · gr-qc· hep-th

Topology and Dark Energy: Testing Gravity in Voids

classification 🌌 astro-ph.CO gr-qchep-th
keywords fielddarkenergygravitynontrivialscalarvoidsalters
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Modified gravity has garnered interest as a backstop against dark matter and dark energy (DE). As one possible modification, the graviton can become massive, which introduces a new scalar field - here with a Galileon-type symmetry. The field can lead to a nontrivial equation of state (EOS) of DE which is density-and-scale-dependent. Tension between Type Ia supernovae and Planck could be reduced. In voids the scalar field dramatically alters the EOS of DE, induces a soon-observable gravitational slip between the two metric potentials, and develops a topological defect (domain wall) due to a nontrivial vacuum structure for the field.

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