The motion of neutral test particles, both massive and massless, in the space time of a charged source described by the Reissner-Nordström solution is studied. This solution is characterized by two parameters, mass and charge, which defines the horizons of the source. When the mass is larger than the charge, the solution describes a black hole, with two distinct horizons. When the mass and charge are equal there is an extremal black hole, and both horizons merge to one. Finally, when the charge is larger than the mass there is a naked singularity, with no horizon. The structure and properties of these different type of solution are presented and discussed. A general solution of the equations of motion is presented in function of the Weierst...
The circular motion of charged test particles in the gravitational field of a Reissner-Nordström bla...
O objetivo principal desta dissertação é analisar o movimento de diferentes tipos de partículas numa...
The goal of this thesis is to study charged Black Holes in the presence of charged matter. To do so...
The motion of neutral test particles, both massive and massless, in the space time of a charged sour...
Abstract. We study the circular motion of charged test particles in the gravitational field of a cha...
Abstract We investigate charged particles’ circular motion in the gravitational field of a charged m...
We investigate charged particles’ circular motion in the gravitational field of a charged mass distr...
The subject of study of this thesis is the Kerr-Newman-(anti-)de Sitter space- time, a rotating and ...
We find a new, non-commutative geometry inspired, solution of the coupled Einstein-Maxwell field equ...
In this work, we present the new technique for discussing the dynamical motion of neutral as well as...
This paper investigates particle dynamics around the noncommutative Reissner Nordström black hole. W...
The radiation from extreme Reissner-Nordstr\"{o}m black holes is computed by explicitly considering ...
Abstract The present work discusses motion of neutral and charged particles in Reissner–Nordström sp...
In this paper we study the timelike geodesics around a spherically symmetric charged dilaton blac...
The present work discusses motion of neutral and charged particles in Reissner–Nordström spacetime. ...
The circular motion of charged test particles in the gravitational field of a Reissner-Nordström bla...
O objetivo principal desta dissertação é analisar o movimento de diferentes tipos de partículas numa...
The goal of this thesis is to study charged Black Holes in the presence of charged matter. To do so...
The motion of neutral test particles, both massive and massless, in the space time of a charged sour...
Abstract. We study the circular motion of charged test particles in the gravitational field of a cha...
Abstract We investigate charged particles’ circular motion in the gravitational field of a charged m...
We investigate charged particles’ circular motion in the gravitational field of a charged mass distr...
The subject of study of this thesis is the Kerr-Newman-(anti-)de Sitter space- time, a rotating and ...
We find a new, non-commutative geometry inspired, solution of the coupled Einstein-Maxwell field equ...
In this work, we present the new technique for discussing the dynamical motion of neutral as well as...
This paper investigates particle dynamics around the noncommutative Reissner Nordström black hole. W...
The radiation from extreme Reissner-Nordstr\"{o}m black holes is computed by explicitly considering ...
Abstract The present work discusses motion of neutral and charged particles in Reissner–Nordström sp...
In this paper we study the timelike geodesics around a spherically symmetric charged dilaton blac...
The present work discusses motion of neutral and charged particles in Reissner–Nordström spacetime. ...
The circular motion of charged test particles in the gravitational field of a Reissner-Nordström bla...
O objetivo principal desta dissertação é analisar o movimento de diferentes tipos de partículas numa...
The goal of this thesis is to study charged Black Holes in the presence of charged matter. To do so...