Spontaneous Scalarization and Boson Stars
arXiv:gr-qc/9911052 · doi:10.1103/PhysRevD.61.124014
Abstract
We study spontaneous scalarization in Scalar-Tensor boson stars. We find that scalarization does not occur in stars whose bosons have no self-interaction. We introduce a quartic self-interaction term into the boson Lagrangian and show that when this term is large, scalarization does occur. Strong self-interaction leads to a large value of the compactness (or sensitivity) of the boson star, a necessary condition for scalarization to occur, and we derive an analytical expression for computing the sensitivity of a boson star in Brans-Dicke theory from its mass and particle number. Next we comment on how one can use the sensitivity of a star in any Scalar-Tensor theory to determine how its mass changes when it undergoes gravitational evolution. Finally, in the Appendix, we derive the most general form of the boson wavefunction that minimises the energy of the star when the bosons carry a U(1) charge.
23 pages, 5 postscript figures. Typing errors corrected. Includes some new text that relates the paper to several previous results. Accepted for publication in PRD
References in corpus (2)
Cited by in corpus (22)
- TOPICAL REVIEW: General relativistic boson stars
- A supermassive boson star at the galactic center?
- The Cauchy problem of scalar-tensor theories of gravity
- Spontaneous scalarization
- Scalarized Hairy Black Holes
- Hyperbolicity of scalar-tensor theories of gravity
- Semi-Analytic Stellar Structure in Scalar-Tensor Gravity
- Spinning Wormholes in Scalar-Tensor Theory
- Dynamic transition to spontaneous scalarization in boson stars
- Induced scalarization in boson stars and scalar gravitational radiation
- Spontaneous scalarization of boson stars
- Boson stars in massless and massive scalar-tensor gravity
- Black holes and a scalar field in an expanding universe
- Spontaneous scalarization of self-gravitating magnetic fields
- Horndeski Proca stars with vector hair
- Dynamical trapping and relaxation of scalar gravitational fields
- Parametric instability induced scalar gravitational waves from a model pulsating neutron star
- The initial value problem of scalar-tensor theories of gravity
- Dynamical transition to spontaneous scalarization in neutron stars: The massive scalar field scenario
- Phase transitions of boson stars in scalar-tensor theories
- Cosmology and Static Spherically Symmetric solutions in D-dimensional Scalar Tensor Theories: Some Novel Features
- Neutron Stars in a Varying Speed of Light Theory