International audienceWe develop a hydrodynamic representation of the Klein-Gordon-Maxwell-Einstein equations. These equations combine quantum mechanics, electromagnetism, and general relativity. We consider the case of an arbitrary curved spacetime, the case of weak gravitational fields in a static or expanding background, and the nonrelativistic (Newtonian) limit. The Klein-Gordon-Maxwell-Einstein equations govern the evolution of a complex scalar field, possibly describing self-gravitating Bose-Einstein condensates, coupled to an electromagnetic field. They may find applications in the context of dark matter, boson stars, and neutron stars with a superfluid core
In this paper, we examine the possibility to implement some form of emergent Newtonian gravity in a ...
Creative Commons Attribution-Noncommercial License We examine the Einstein equation coupled to the K...
First, the present work is concerned with generalising constructions and results in quantum field th...
We consider the possibility that the dark matter which is required to explain the dynamics of the ne...
We derive a generalized Gross-Pitaevski (GP) equation for a Bose Einstein Condensate (BEC)...
In this paper we will investigate how one can create emergent curved spacetimes by locally tuning th...
In cosmological special relativity theory, we study Maxwell equations, electromagnetic wave equation...
In this paper we present a new unified theory of electromagnetic and gravitational interactions. By ...
Abstract. We discuss the analogy between a classical scalar field with a self–interacting potential,...
This paper invokes a new mechanism for reducing a coupled system of fields (including Einstein's equ...
We use covariant techniques to study the non-linear evolution of self-gravitating, non-relativistic ...
We analyse prospects for the use of Bose-Einstein condensates as condensed-matter systems suitable f...
<p>We examine the Einstein equation coupled to the Klein-Gordon equation for a complex-valued scalar...
The linearization of General Relativity leads to various formulations of gravity often referred to a...
We consider the evolution of electromagnetic fields in curved spacetimes and calculate the nonlinear...
In this paper, we examine the possibility to implement some form of emergent Newtonian gravity in a ...
Creative Commons Attribution-Noncommercial License We examine the Einstein equation coupled to the K...
First, the present work is concerned with generalising constructions and results in quantum field th...
We consider the possibility that the dark matter which is required to explain the dynamics of the ne...
We derive a generalized Gross-Pitaevski (GP) equation for a Bose Einstein Condensate (BEC)...
In this paper we will investigate how one can create emergent curved spacetimes by locally tuning th...
In cosmological special relativity theory, we study Maxwell equations, electromagnetic wave equation...
In this paper we present a new unified theory of electromagnetic and gravitational interactions. By ...
Abstract. We discuss the analogy between a classical scalar field with a self–interacting potential,...
This paper invokes a new mechanism for reducing a coupled system of fields (including Einstein's equ...
We use covariant techniques to study the non-linear evolution of self-gravitating, non-relativistic ...
We analyse prospects for the use of Bose-Einstein condensates as condensed-matter systems suitable f...
<p>We examine the Einstein equation coupled to the Klein-Gordon equation for a complex-valued scalar...
The linearization of General Relativity leads to various formulations of gravity often referred to a...
We consider the evolution of electromagnetic fields in curved spacetimes and calculate the nonlinear...
In this paper, we examine the possibility to implement some form of emergent Newtonian gravity in a ...
Creative Commons Attribution-Noncommercial License We examine the Einstein equation coupled to the K...
First, the present work is concerned with generalising constructions and results in quantum field th...