The energy (due to matter and fields including gravitation) of the Schwarzschild-de Sitter spacetime is investigated by using the Moller energy-momentum definition in both general relativity and teleparallel gravity. We found the same energy distribution for a given metric in both of these different gravitation theories. It is also independent of the teleparallel dimensionless coupling constant, which means that it is valid in any teleparallel model. Our results sustain that (a) the importance of the energy-momentum definitions in the evaluation of the energy distribution of a given spacetime and (b) the viewpoint of Lessner that the Moller energy-momentum complex is a powerfifi concept of energy and momentum
We use the teleparallel geometry analog of the Moller energy-momentum complex to calculate the energ...
In this paper, utilizing Moller's energy-momentum complex, we explicitly evaluate the energy and mom...
In this paper, we utilize the teleparallel gravity analogs of the energy and momentum definitions of...
The energy (due to matter and fields including gravitation) of the Schwarzschild-de Sitter spacetime...
In order to obtain energy and momentum (due to matter and fields including gravitation) distribution...
We use the M{\o}ller energy-momentum complex both in general relativity and teleparallel gravity to ...
In this paper, we consider both Einstein's theory of general relativity and the teleparallel gravity...
In this paper, we consider both Einstein's theory of general relativity and the teleparallel gravity...
We use the Moller energy-momentum complex both in general relativity and teleparallel gravity to eva...
Abstract In order to evaluate the energy distribution (due to matter and fields including gravitatio...
In this work, in order to compute energy and momentum distributions (due to matter plus fields inclu...
The Moller energy(due to matter and fields including gravity) distribution of the traversable Lorent...
In order to obtain energy and momentum (due to matter and fields including gravitation) distribution...
The energy (due to matter plus fields including gravity) distribution of the Reissner-Nordstrom anti...
Considering the Moller energy definition in both Einstein's theory of general relativity and tele-pa...
We use the teleparallel geometry analog of the Moller energy-momentum complex to calculate the energ...
In this paper, utilizing Moller's energy-momentum complex, we explicitly evaluate the energy and mom...
In this paper, we utilize the teleparallel gravity analogs of the energy and momentum definitions of...
The energy (due to matter and fields including gravitation) of the Schwarzschild-de Sitter spacetime...
In order to obtain energy and momentum (due to matter and fields including gravitation) distribution...
We use the M{\o}ller energy-momentum complex both in general relativity and teleparallel gravity to ...
In this paper, we consider both Einstein's theory of general relativity and the teleparallel gravity...
In this paper, we consider both Einstein's theory of general relativity and the teleparallel gravity...
We use the Moller energy-momentum complex both in general relativity and teleparallel gravity to eva...
Abstract In order to evaluate the energy distribution (due to matter and fields including gravitatio...
In this work, in order to compute energy and momentum distributions (due to matter plus fields inclu...
The Moller energy(due to matter and fields including gravity) distribution of the traversable Lorent...
In order to obtain energy and momentum (due to matter and fields including gravitation) distribution...
The energy (due to matter plus fields including gravity) distribution of the Reissner-Nordstrom anti...
Considering the Moller energy definition in both Einstein's theory of general relativity and tele-pa...
We use the teleparallel geometry analog of the Moller energy-momentum complex to calculate the energ...
In this paper, utilizing Moller's energy-momentum complex, we explicitly evaluate the energy and mom...
In this paper, we utilize the teleparallel gravity analogs of the energy and momentum definitions of...