The Effect of Cosmological Evolution on Solar System Constraints and on the Scalarization of Neutron Stars in Massless Scalar-Tensor Theories
arXiv:1607.08888 · doi:10.1103/PhysRevD.94.104064
Abstract
Certain scalar-tensor theories of gravity that generalize Jordan-Fierz-Brans-Dicke theory are known to predict non-trivial phenomenology for neutron stars. In these theories, first proposed by Damour and Esposito-Farèse, the scalar field has a standard kinetic term, and couples conformally to the matter fields. The weak equivalence principle is therefore satisfied, but scalar effects may arise in strong-field regimes, e.g. allowing for violations of the strong equivalence principle in neutron stars ("spontaneous scalarization") or in sufficiently tight binary neutron-star systems ("dynamical/induced scalarization"). The original scalar-tensor theory proposed by Damour and Esposito-Farèse is in tension with solar-system constraints (for couplings that lead to scalarization), if one accounts for cosmological evolution of the scalar field and no mass term is included in the action. We here extend the conformal coupling of that theory, in order to ascertain if, in this way, solar-system tests can be passed, while retaining a non-trivial phenomenology for neutron stars. We find that even with this generalized conformal coupling, it is impossible to construct a theory that passes both Big-Bang nucleosynthesis and solar-system constraints, while simultaneously allowing for scalarization in isolated/binary neutron stars.
15 pages, 9 figures
References in corpus (6)
- Effective Field Theory for Inflation
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- Neutron-star mergers in scalar-tensor theories of gravity
- Projected Constraints on Scalarization with Gravitational Waves from Neutron Star Binaries
- Quasiequilibrium sequences of binary neutron stars undergoing dynamical scalarization
- Electromagnetic outflows in a class of scalar-tensor theories: binary neutron star coalescence
Cited by in corpus (18)
- Spontaneous scalarization
- An effective action model of dynamically scalarizing binary neutron stars
- Solar System Constraints on Scalar-Tensor Gravity with Positive Coupling Constant upon Cosmological Evolution of the Scalar Field
- Cosmological instability of scalar-Gauss-Bonnet theories exhibiting scalarization
- Scalarized neutron stars in massive scalar-tensor gravity: X-ray pulsars and tidal deformability
- Spin-orbit effects for compact binaries in scalar-tensor gravity
- Numerical simulations of black hole-neutron star mergers in scalar-tensor gravity
- Neutron Stars in Scalar-Tensor Theories: Analytic Scalar Charges and Universal Relations
- Scalar charges and pulsar-timing observables in the presence of nonminimally coupled scalar fields
- Scalar Dark Energy Models and Scalar-Tensor Gravity: Theoretical Explanations for the Accelerated Expansion of Present Universe
- Scalar-tensor gravity from thermodynamic and fluid-gravity perspective
- Cosmology in theories with spontaneous scalarization of neutron stars
- The gravitational Higgs mechanism and resulting smoking gun effects
- Probing Fundamental Physics with Gravitational Waves
- Symmetry restoration in the vicinity of neutron stars with a nonminimal coupling
- Scalarized neutron stars with a highly relativistic core in scalar-tensor gravity
- Compact stars in scalar-tensor theories with a single-well potential and the corresponding theory
- X-ray pulsed light curves of highly compact neutron stars as probes of scalar-tensor theories of gravity