The ghost of vector fields in compact stars
arXiv:2110.04594 · doi:10.1103/PhysRevD.105.024046
Abstract
Spontaneous scalarization is a mechanism that allows a scalar field to go undetected in weak gravity environments and yet develop a nontrivial configuration in strongly gravitating systems. At the perturbative level it manifests as a tachyonic instability around spacetimes that solve Einstein's equations. The endpoint of this instability is a nontrivial scalar field configuration that can significantly modify a compact object's structure and can produce observational signatures of the scalar field's presence. Does such a mechanism exists for vector fields? Here we revisit the model that constitutes the most straightforward generalization of the original scalarization model to a vector field and perform a perturbative analysis. We show that a ghost appears as soon as the square of the naive effective mass squared becomes negative anywhere. This result poses a serious obstacle in generalizing spontaneous scalarization to vector fields.
12 pages. v2: corrections to Eqs. (23)-(24), new references. v3: matches published version
References in corpus (30)
- The Confrontation between General Relativity and Experiment
- Neutron-star mergers in scalar-tensor theories of gravity
- xPerm: fast index canonicalization for tensor computer algebra
- xPert: Computer algebra for metric perturbation theory
- Surface singularities in Eddington-inspired Born-Infeld gravity
- Dynamics of spontaneous black hole scalarization and mergers in Einstein-scalar-Gauss-Bonnet gravity
- Improved gravitational-wave constraints on higher-order curvature theories of gravity
- A no-go theorem for polytropic spheres in Palatini f(R) gravity
- Evolution of Einstein-scalar-Gauss-Bonnet gravity using a modified harmonic formulation
- Spontaneous growth of vector fields in gravity
- The viability of theories with matter coupled to the Ricci scalar
- Curvature singularities, tidal forces and the viability of Palatini f(R) gravity
- Quasiequilibrium sequences of binary neutron stars undergoing dynamical scalarization
- Electromagnetism and hidden vector fields in modified gravity theories: spontaneous and induced vectorization
- On the possibility of setting a new constraint to scalar-tensor theories
- Awaking the vacuum in relativistic stars
- The vacuum revealed: the final state of vacuum instabilities in compact stars
- Long-lived inverse chirp signals from core collapse in massive scalar-tensor gravity
- Scalarization of neutron stars with realistic equations of state
- Spontaneous tensorization from curvature coupling and beyond
- Destabilization of black holes and stars by generalized Proca fields
- Spontaneously scalarized black holes in dynamical Chern-Simons gravity: dynamics and equilibrium solutions
- Dynamical Formation of Scalarized Black Holes and Neutron Stars through Stellar Core Collapse
- The onset of spontaneous scalarization in generalised scalar-tensor theories
- An effective action model of dynamically scalarizing binary neutron stars
- Spontaneously vectorized Einstein-Gauss-Bonnet black holes
- Core collapse in massive scalar-tensor gravity
- Generalized disformal coupling leads to spontaneous tensorization
- Stealth spontaneous spinorization of relativistic stars
- The gravitational Higgs mechanism and resulting smoking gun effects