Pantheon and H(z) data force the cosmic triad vector dark energy model to sit very close to the LambdaCDM limit.
Instability of anisotropic cosmological solutions supported by vector fields
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abstract
Models with vector fields acquiring a non-vanishing vacuum expectation value along one spatial direction have been proposed to sustain a prolonged stage of anisotropic accelerated expansion. Such models have been used for realizations of early time inflation, with a possible relation to the large scale CMB anomalies, or of the late time dark energy. We show that, quite generally, the concrete realizations proposed so far are plagued by instabilities (either ghosts, or unstable growth of the linearized perturbations) which can be ultimately related to the longitudinal vector polarization present in them. Phenomenological results based on these models are therefore unreliable.
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Observational constraints on vector-like dark energy
Pantheon and H(z) data force the cosmic triad vector dark energy model to sit very close to the LambdaCDM limit.