An analysis of Born-Infeld boson compact objects
arXiv:2505.07134 · doi:10.1103/6mtm-bgy1
Abstract
In this paper we study gravitationally bound compact objects sourced by a string theory inspired Born-Infeld scalar field. Unlike many of their canonical scalar field counterparts, these ``boson stars'' do not have to extend out to infinity and may generate compact bodies. We analyze in detail both the junction conditions at the surface as well as the boundary conditions at the center which are required in order to have a smooth structure throughout the object and into the exterior vacuum region. These junction conditions, although involved, turn out to be relatively easy to satisfy. Analysis reveals that these compact objects have a richer structure than the canonical boson stars and some of these properties turn out to be physically peculiar: There are several branches of solutions depending on how the junction conditions are realized. Further analysis illustrates that in practice the junction conditions tend to require interior geometries reminiscent of ``bag of gold'' spacetimes, and also hide the star behind an event horizon in its exterior. The surface compactness of such objects, defined here as the ratio , can be made arbitrarily close to unity indicating the absence of a Buchdahl bound. Some comments on the stability of these objects is provided to find possible stable and unstable regimes. However, we argue that even in the possibly stable regime the event horizon in the vacuum region shielding the object is potentially unstable, and would cut off the star from the rest of the universe.
18 pages. Version 2 has a number of clarifying additions to match version accepted for publication in Physical Review D
References in corpus (33)
- The Cosmological Constant
- Dark Energy and the Accelerating Universe
- Tachyon Matter
- TOPICAL REVIEW: General relativistic boson stars
- Field Theory of Tachyon Matter
- Tachyon couplings on non-BPS D-branes and Dirac-Born-Infeld action
- Radial pulsations and stability of anisotropic stars with quasi-local equation of state
- Born-Infeld Phantom Gravastars
- Cosmic Acceleration, Dark Energy and Fundamental Physics
- Cosmological evolution of a complex scalar field with repulsive or attractive self-interaction
- Charged Boson Stars and Black Holes
- Quantum cosmology and late-time singularities
- Cosmology with a Nonlinear Born-Infeld type Scalar Field
- Compact Q-balls in the complex signum-Gordon model
- Boson Stars with Nontrivial Topology
- Extended Born-Infeld Dynamics and Cosmology
- On Profiles of Boson Stars with Self-Interactions
- Bag-of-gold spacetimes, Euclidean wormholes, and inflation from domain walls in AdS/CFT
- Late-time acceleration with a scalar field source: Observational constraints and statefinder diagnostics
- Dark energy-like stars from nonminimally coupled scalar field
- Boson stars in extended theory of gravity
- Born-Infeld cosmology with scalar Born-Infeld matter
- General solutions of Einstein's spherically symmetric gravitational equations with junction conditions
- Junction Conditions for F(T) Gravity from a Variational Principle
- Formation of photon spheres in boson stars with a nonminimally coupled field
- Note on the charged boson stars with torsion-coupled field
- Scalar Field as Dark Energy Accelerating Expansion of the Universe
- Brief history for the search and discovery of the Higgs particle - A personal perspective
- Born-Infeld boson stars
- Spherical black holes with minimally coupled scalar cloud/hair in Einstein-Born-Infeld gravity
- Born-Infeld black holes coupled to a massive scalar field
- Spherically symmetric massive scalar fields in GR
- The cosmological constant and a scalar field coupled non minimally to gravity