Scalar fields coupled to the Gauss-Bonnet invariant evade the known no-hair theorems and have nontrivial configurations around black holes. We focus on a scalar field that couples linearly to the Gauss-Bonnet invariant and hence exhibits shift symmetry. We study its dynamical evolution and the formation of scalar hair in a Schwarzschild background. We show that the evolution eventually settles to the known static hairy solutions in the appropriate limit
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
We study the nonlinear dynamics of black holes that carry scalar hair and binaries composed of such ...
We study the nonlinear dynamics of black holes that carry scalar hair and binaries composed of such ...
Scalar fields coupled to the Gauss-Bonnet invariant evade the known no-hair theorems and have nontri...
Scalar fields coupled to the Gauss-Bonnet invariant evade the known no-hair theorems and have nontri...
A linear coupling between a scalar field and the Gauss–Bonnet invariant is the only known interactio...
A linear coupling between a scalar field and the Gauss–Bonnet invariant is the only known interactio...
Scalar hair of black holes in theories with a shift symmetry are constrained by the no-hair theorem ...
A linear coupling between a scalar field and the Gauss–Bonnet invariant is the only known interactio...
A linear coupling between a scalar field and the Gauss–Bonnet invariant is the only known interactio...
The most general action for a scalar field coupled to gravity that leads to second-order field equat...
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
In this paper, we study the dynamics of scalar hair around a Schwarzchild black hole. The scalar hai...
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
We study the nonlinear dynamics of black holes that carry scalar hair and binaries composed of such ...
We study the nonlinear dynamics of black holes that carry scalar hair and binaries composed of such ...
Scalar fields coupled to the Gauss-Bonnet invariant evade the known no-hair theorems and have nontri...
Scalar fields coupled to the Gauss-Bonnet invariant evade the known no-hair theorems and have nontri...
A linear coupling between a scalar field and the Gauss–Bonnet invariant is the only known interactio...
A linear coupling between a scalar field and the Gauss–Bonnet invariant is the only known interactio...
Scalar hair of black holes in theories with a shift symmetry are constrained by the no-hair theorem ...
A linear coupling between a scalar field and the Gauss–Bonnet invariant is the only known interactio...
A linear coupling between a scalar field and the Gauss–Bonnet invariant is the only known interactio...
The most general action for a scalar field coupled to gravity that leads to second-order field equat...
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
In this paper, we study the dynamics of scalar hair around a Schwarzchild black hole. The scalar hai...
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
International audienceScalar-tensor theories are a natural alternative to general relativity, as the...
We study the nonlinear dynamics of black holes that carry scalar hair and binaries composed of such ...
We study the nonlinear dynamics of black holes that carry scalar hair and binaries composed of such ...