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Related papers: Numerical evolutions of spherical Proca stars

200 papers

We numerically test quasi-periodic oscillations using three theoretically-motivated models of spacetime adopting neutron star sources. Then, we compare our findings with a spherically-symmetric spacetime inferred from $F(R)$ gravity, with…

General Relativity and Quantum Cosmology · Physics 2022-12-21 Kuantay Boshkayev , Orlando Luongo , Marco Muccino

We construct and explore the physical properties of \textit{scalaroca stars}: spherically symmetric solitonic solutions made of a complex scalar field $\Phi$ and a complex Proca field $A^\mu$. We restrict our attention to configurations in…

General Relativity and Quantum Cosmology · Physics 2023-09-26 Alexandre M. Pombo , João M. S. Oliveira , Nuno M. Santos

We consider the Vlasov-Poisson system in a cosmological setting and prove nonlinear stability of homogeneous solutions against small, spatially periodic perturbations in the sup-norm of the spatial mass density. This result is connected…

General Relativity and Quantum Cosmology · Physics 2009-10-28 Gerhard Rein

The Klein-Gordon-Einstein equations of classical real scalar fields have time-dependent solutions (periodic in time). We show that quantum real scalar fields can form non-oscillating (static) solitonic objects, which are quite similar to…

General Relativity and Quantum Cosmology · Physics 2007-05-23 Jeongwon Ho , F. C. Khanna , Chul H. Lee

A massive vector boson field in the vicinity of a rotating black hole is known to suffer an instability, due to the exponential amplification of (co-rotating, low-frequency) bound states by black hole superradiance. Here we calculate the…

General Relativity and Quantum Cosmology · Physics 2018-11-12 Sam R. Dolan

We discuss a new perturbation method to study the dynamics of massive vector fields on (near-)extremal static black hole spacetimes. We start with, as our background, a rather generic class of warped product metrics, and classify the field…

General Relativity and Quantum Cosmology · Physics 2019-10-29 Kodai Ueda , Akihiro Ishibashi

Excited state soliton stars are studied numerically for the first time. The stability of spherically symmetric S-branch excited state oscillatons under radial perturbations is investigated using a 1D code. We find that these stars are…

General Relativity and Quantum Cosmology · Physics 2008-11-26 Jayashree Balakrishna , Ruxandra Bondarescu , Gregory Daues , Mihai Bondarescu

Scalar, spherically symmetric, radially excited boson stars were previously shown to be stabilized, against spherical dynamics, by sufficiently strong self-interactions. Here, we further test their stability now in a full 3+1D evolution. We…

General Relativity and Quantum Cosmology · Physics 2026-01-08 Marco Brito , Carlos Herdeiro , Eugen Radu , Nicolas Sanchis-Gual , Miguel Zilhão

We present a brief synopsis of related work (gr-qc/0007039), describing a study of black hole threshold phenomena for a self-gravitating, massive complex scalar field in spherical symmetry. We construct Type I critical solutions dynamically…

General Relativity and Quantum Cosmology · Physics 2009-11-07 Scott H. Hawley , Matthew W. Choptuik

Boson stars in zero-, one-, and two-node equilibrium states are modeled numerically within the framework of Scalar-Tensor Gravity. The complex scalar field is taken to be both massive and self-interacting. Configurations are formed in the…

General Relativity and Quantum Cosmology · Physics 2009-10-30 G. L. Comer , Hisa-aki Shinkai

It is notoriously difficult to construct a stable non-singular bouncing cosmology that avoids all possible instabilities throughout the entire evolution of the universe. In this work, we explore whether a non-singular bounce driven by a…

General Relativity and Quantum Cosmology · Physics 2025-02-26 Lara Bohnenblust , Serena Giardino , Lavinia Heisenberg , Nadine Nussbaumer

In beyond-generalized Proca theories including the extension to theories higher than second order, we study the role of a spatial component $v$ of a massive vector field on the anisotropic cosmological background. We show that, as in the…

General Relativity and Quantum Cosmology · Physics 2016-11-15 Lavinia Heisenberg , Ryotaro Kase , Shinji Tsujikawa

We introduce our approaches, in particular the modifications of the primitive recovery procedure, to handle bare quark stars in numerical relativity simulations. Reliability and convergence of our implementation are demonstrated by evolving…

General Relativity and Quantum Cosmology · Physics 2021-06-09 Enping Zhou , Kenta Kiuchi , Masaru Shibata , Antonios Tsokaros , Koji Uryu

We investigate stability issues for steady states of the spherically symmetric Einstein-Vlasov system numerically in Schwarzschild, maximal areal, and Eddington-Finkelstein coordinates. Across all coordinate systems we confirm the…

General Relativity and Quantum Cosmology · Physics 2022-04-27 Sebastian Günther , Jacob Körner , Timo Lebeda , Bastian Pötzl , Gerhard Rein , Christopher Straub , Jörg Weber

Bosonic stars,hypothetical astrophysical entities, are generally categorized into two primary classes based on the nature of their constituent particles: Einstein Klein Gordon stars, made up of massive scalar bosons, and Proca stars, their…

Astrophysics of Galaxies · Physics 2025-09-24 Jorge Castelo Mourelle , Nicolas Sanchis-Gual , José A. Font

We prove existence of large families of solutions of Einstein-complex scalar field equations with a negative cosmological constant, with a stationary or static metric and a time-periodic complex scalar field.

General Relativity and Quantum Cosmology · Physics 2019-02-06 Piotr T. Chruściel , Erwann Delay , Paul Klinger , Andreas Kriegl , Peter W. Michor , Armin Rainer

This thesis describes a numerical study of binary boson stars within the context of an approximation to general relativity. The approximation we adopt places certain restrictions on the dynamical variables of general relativity (conformal…

General Relativity and Quantum Cosmology · Physics 2010-03-02 Bruno C. Mundim

We discuss a general method to study linear perturbations of slowly rotating black holes which is valid for any perturbation field, and particularly advantageous when the field equations are not separable. As an illustration of the method…

General Relativity and Quantum Cosmology · Physics 2015-06-11 Paolo Pani , Vitor Cardoso , Leonardo Gualtieri , Emanuele Berti , Akihiro Ishibashi

We study, for the first time, the evolution of a scalar cloud bound to an evaporating black hole. Our simulations of the associated Schr\"odinger-Poisson system for non-relativistic and spherically symmetric clouds reveal that a scalar…

General Relativity and Quantum Cosmology · Physics 2025-12-05 Daniel Neves , João G. Rosa

We study the stability of three-dimensional numerical evolutions of the Einstein equations, comparing the standard ADM formulation to variations on a family of formulations that separate out the conformal and traceless parts of the system.…

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