Tensor Modes in Bigravity: Primordial to Present
arXiv:1503.05560 · doi:10.1103/PhysRevD.92.044001
Abstract
Massive bigravity, a theoretically consistent modification of general relativity with an additional dynamical rank two tensor, successfully describes the observed accelerated expansion of the Universe without a cosmological constant. Recent analyses of perturbations around a cosmological background have revealed power law instabilities in both scalar and tensor perturbations, motivating an analysis of the initial conditions, evolution, and cosmological observables to determine the viability of these theories. In this paper we focus on the tensor sector, and study a primordial stochastic gravitational wave background in massive bigravity. The phenomenology can differ from standard General Relativity due to non-trivial mixing between the two linearized tensor fluctuations in the theory, only one of which couples to matter. We study perturbations about two classes of cosmological solutions in bigravity, computing the tensor contribution to the temperature anisotropies in the Cosmic Microwave Background radiation and the present stochastic gravitational wave background. The result is strongly dependent on the choice of cosmological background and initial conditions. One class of background solution generically displaying tremendous growth in the amplitude of large-wavelength gravitational waves, while the other remains observationally indistinguishable from standard General Relativity for a wide variety of initial conditions. We analyze the initial conditions for tensor modes expected in an inflationary cosmology, finding again that there is a strong dependence on the assumed background. For one choice of background, the semi-classical theory is beyond the perturbative regime. For the other choice, inflation generically yields initial conditions that, when evolved, give rise to a stochastic background observationally indistinguishable from standard General Relativity.
18 pages, 9 figures. Section VI.B added in v3
References in corpus (23)
- Resummation of Massive Gravity
- Massive Gravity
- Upper bounds on the low-frequency stochastic gravitational wave background from pulsar timing observations: current limits and future prospects
- Anisotropic stress as signature of non-standard propagation of gravitational waves
- On couplings to matter in massive (bi-)gravity
- Stable and unstable cosmological models in bimetric massive gravity
- Spontaneous Lorentz Breaking and Massive Gravity
- Viable cosmological solutions in massive bimetric gravity
- Cosmological perturbations in massive bigravity
- Gravitational waves in bigravity cosmology
- Measuring the speed of cosmological gravitational waves
- Effects of modified gravity on B-mode polarization
- Instability in a minimal bimetric gravity model
- Linear growth of structure in massive bigravity
- Quantum corrections in massive bigravity and new effective composite metrics
- Integrated Sachs-Wolfe effect in massive bigravity
- Friction in Gravitational Waves: a test for early-time modified gravity
- Implications of the B-mode Polarization Measurement for Direct Detection of Inflationary Gravitational Waves
- Surfing gravitational waves: can bigravity survive growing tensor modes?
- Oscillating modulation to B-mode polarization from varying propagating speed of primordial gravitational waves
- Self-accelerating Massive Gravity: Bimetric Determinant Singularities
- Gravitational Waves: A Test for Modified Gravity
- Primordial Gravitational Waves in Bimetric Gravity
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- Mild bounds on bigravity from primordial gravitational waves
- Probing the inflationary particle content: extra spin-2 field
- Scalar instabilities in bimetric gravity: The Vainshtein mechanism and structure formation
- New massive bigravity cosmologies with double matter coupling
- Testing gravity theories using tensor perturbations
- Consistent metric combinations in cosmology of massive bigravity
- Possible Signatures of Inflationary Particle Content: Spin-2 Fields
- Combining cosmological and local bounds on bimetric theory
- A general theory of linear cosmological perturbations: bimetric theories
- Cutoff for Extensions of Massive Gravity and Bi-Gravity
- On nonlocally interacting metrics, and a simple proposal for cosmic acceleration
- Cosmological histories in bimetric gravity: A graphical approach
- Probing alternative cosmologies through the inverse distance ladder
- Primordial gravitational wave phenomenology with polarized Sunyaev Zel'dovich tomography
- Aller guten Dinge sind drei: Cosmology with three interacting spin-2 fields
- Primordial Gravitational Waves in Bimetric Gravity
- Dark Energy and Doubly Coupled Bigravity