Generation of scalar-tensor gravity effects in equilibrium state boson stars
arXiv:gr-qc/9708071 · doi:10.1088/0264-9381/15/3/016
Abstract
Boson stars in zero-, one-, and two-node equilibrium states are modeled numerically within the framework of Scalar-Tensor Gravity. The complex scalar field is taken to be both massive and self-interacting. Configurations are formed in the case of a linear gravitational scalar coupling (the Brans-Dicke case) and a quadratic coupling which has been used previously in a cosmological context. The coupling parameters and asymptotic value for the gravitational scalar field are chosen so that the known observational constraints on Scalar-Tensor Gravity are satisfied. It is found that the constraints are so restrictive that the field equations of General Relativity and Scalar-Tensor gravity yield virtually identical solutions. We then use catastrophe theory to determine the dynamically stable configurations. It is found that the maximum mass allowed for a stable state in Scalar-Tensor gravity in the present cosmological era is essentially unchanged from that of General Relativity. We also construct boson star configurations appropriate to earlier cosmological eras and find that the maximum mass for stable states is smaller than that predicted by General Relativity, and the more so for earlier eras. However, our results also show that if the cosmological era is early enough then only states with positive binding energy can be constructed.
20 pages, RevTeX, 11 figures, to appear in Class. Quantum Grav., comments added, refs updated
References in corpus (3)
Cited by in corpus (23)
- TOPICAL REVIEW: General relativistic boson stars
- A supermassive boson star at the galactic center?
- Boson Stars: Alternatives to primordial black holes?
- Boson Stars and Oscillatons: A Review
- Probing Strong-Field Scalar-Tensor Gravity with Gravitational Wave Asteroseismology
- Maximum Mass-Radius Ratio for Compact General Relativistic Objects in Schwarzschild- de Sitter Geometry
- Brans-Dicke Boson Stars: Configurations and Stability through Cosmic History
- Dynamical instability of fluid spheres in the presence of a cosmological constant
- Dynamic transition to spontaneous scalarization in boson stars
- Induced scalarization in boson stars and scalar gravitational radiation
- Spontaneous Scalarization and Boson Stars
- Charged Scalar-Tensor Boson Stars: Equilibrium, Stability and Evolution
- Dynamical evolution of boson stars in Brans-Dicke theory
- Neutron star in presence of torsion-dilaton field
- Tensor mass and particle number peak at the same location in the scalar-tensor gravity boson star models - an analytical proof
- Mathematical Modeling of Boson-Fermion Stars in the Generalized Scalar-Tensor Theories of Gravity
- Boson stars in massive dilatonic gravity
- Boson stars in massless and massive scalar-tensor gravity
- Black holes and a scalar field in an expanding universe
- Neutron Stars in a Varying Speed of Light Theory
- Q-stars in scalar-tensor gravitational theories in extra dimensions
- Q-stars in scalar-tensor gravitational theories
- EYM equations in the presence of q-stars is scalar-tensor gravitational theories