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Probing cosmological fields with gravitational wave oscillations

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arxiv 1912.06104 v2 pith:4OKOJ6FU submitted 2019-12-12 astro-ph.CO gr-qchep-th

Probing cosmological fields with gravitational wave oscillations

classification astro-ph.CO gr-qchep-th
keywords modesoscillationscosmologicalfieldschiralitycoupledevolutiongravitational
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Gravitational wave (GW) oscillations occur whenever there are additional tensor modes interacting with the perturbations of the metric coupled to matter. These extra modes can arise from new spin-2 fields (as in e.g. bigravity theories) or from non-trivial realisations of the cosmological principle induced by background vector fields with internal symmetries (e.g. Yang-Mills, gaugids or multi-Proca). We develop a general cosmological framework to study such novel features due to oscillations. The evolution of the two tensor modes is described by a linear system of coupled second order differential equations exhibiting friction, velocity, chirality and mass mixing. We follow appropriate schemes to obtain approximate solutions for the evolution of both modes and show the corresponding phenomenology for different mixings. Observational signatures include modulations of the wave-form, oscillations of the GW luminosity distance, anomalous GW speed and chirality. We discuss the prospects of observing these effects with present and future GW observatories such as LIGO/VIRGO and LISA.

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    A tuned vector-field EFT can have an exactly isotropic FLRW background while hiding a preferred direction that reappears in perturbations as direction-dependent propagation and scalar–tensor mixing.