We study the time evolution of spherical, excited (i.e. nodeful) boson star (BS) models. We consider a model including quartic self-interactions, controlled by a coupling Λ. Performing non-linear simulations of the Einstein- (complex)–Klein–Gordon system, using as initial data equilibrium BSs solutions of that system, we assess the impact of Λ in the stability properties of the BSs. In the absence of self-interactions (Λ = 0), we observe the known behaviour that the excited stars in the (candidate) stable branch decay to a nonexcited star without a node; however, we show that for large enough values of the self-interactions coupling, these excited stars do not decay (up to timescales of about t ∼ 104). The stabilization of the excited...
International audienceWe have developed a highly accurate numerical code capable of solving the coup...
The idea of stable, localized bundles of energy has strong appeal as a model for particles. In the 1...
Many gravitational phenomena that lie at the core of our understanding of the Universe have not yet ...
l-boson stars are static, spherical, multifield self-gravitating solitons. They are asymptotically f...
We study boson star configurations with generic, but not nontopological, self-interaction terms. Whe...
We make a detailed study of boson star configurations in Jordan--Brans--Dicke theory, studying both ...
If ultralight bosonic fields exist in nature as dark matter, superradiance spins down rotating black...
We study the transition of charged boson stars from sub- to super-criticality. This transition is de...
We study numerical evolutions of an initial cloud of self-gravitating bosonic dark matter with finit...
Spinning bosonic stars (SBSs) can form from the gravitational collapse of a dilute cloud of scalar/P...
In previousworkwe constructed newboson star solutions consisting of a family of massive complex scal...
Motivated by the increasing interest in models which consider scalar fields as viable dark matter ca...
Ultra light axion fields, motivated by the string theory, form a large condensate (axion cloud) arou...
We present results from a study of Type I critical phenomena in the dynamics of general relativistic...
International audienceWe have developed a highly accurate numerical code capable of solving the coup...
International audienceWe have developed a highly accurate numerical code capable of solving the coup...
The idea of stable, localized bundles of energy has strong appeal as a model for particles. In the 1...
Many gravitational phenomena that lie at the core of our understanding of the Universe have not yet ...
l-boson stars are static, spherical, multifield self-gravitating solitons. They are asymptotically f...
We study boson star configurations with generic, but not nontopological, self-interaction terms. Whe...
We make a detailed study of boson star configurations in Jordan--Brans--Dicke theory, studying both ...
If ultralight bosonic fields exist in nature as dark matter, superradiance spins down rotating black...
We study the transition of charged boson stars from sub- to super-criticality. This transition is de...
We study numerical evolutions of an initial cloud of self-gravitating bosonic dark matter with finit...
Spinning bosonic stars (SBSs) can form from the gravitational collapse of a dilute cloud of scalar/P...
In previousworkwe constructed newboson star solutions consisting of a family of massive complex scal...
Motivated by the increasing interest in models which consider scalar fields as viable dark matter ca...
Ultra light axion fields, motivated by the string theory, form a large condensate (axion cloud) arou...
We present results from a study of Type I critical phenomena in the dynamics of general relativistic...
International audienceWe have developed a highly accurate numerical code capable of solving the coup...
International audienceWe have developed a highly accurate numerical code capable of solving the coup...
The idea of stable, localized bundles of energy has strong appeal as a model for particles. In the 1...
Many gravitational phenomena that lie at the core of our understanding of the Universe have not yet ...