Using the relation proposed by Weinberg in 1972, combining quantum and cosmological parameters, we prove that the self gravitational potential energy of any fundamental particle is a quantum, with physical properties independent of the mass of the particle. It is a universal quantum of gravitational energy, and its physical properties depend only on the cosmological scale factor R and the physical constants ℏ and c. We propose a modification of the Weinberg’s relation, keeping the same numerical value, but substituting the cosmological parameter H/c by 1/R
We prove here that Newton’s universal gravitation and momentum conservation laws together reproduce ...
A comparison of the cosmological vacuum energy density with the vacuum energy density present in Cas...
Some models are presented in which the strength of the gravitational coupling of the potential energ...
Using the relation proposed by Weinberg in 1972, combining quantum and cosmological parameters, we p...
Based on a Planck scale underpinning for the universe, we deduce an expression for the gravitational...
Abstract The paper deals with the scale discrepancy between the observed vacuum energy in cosmology ...
In this paper we investigate a possible energy scale dependence of the quantization rules and in par...
In a previously derived geometry-based energetic expression, the Newtonian gravitational constant (G...
The paper deals with the scale discrepancy between the observed vacuum energy in cosmology and the t...
The acceleration of the surface of last scatter (SLS) must somehow reflect the energy content within...
The acceleration of the surface of last scatter (SLS) must somehow reflect the energy content within...
The arguments of statistical nature for the existence of constituents of active gravitational masses...
It has recently been shown that any observed potential can in principle be generated via quantum mec...
We develop a geometro-dynamical approach to the cosmological constant problem (CCP) by invoking a ge...
A series of apparent relations were derived from a hypothetical energetic system, in which a singula...
We prove here that Newton’s universal gravitation and momentum conservation laws together reproduce ...
A comparison of the cosmological vacuum energy density with the vacuum energy density present in Cas...
Some models are presented in which the strength of the gravitational coupling of the potential energ...
Using the relation proposed by Weinberg in 1972, combining quantum and cosmological parameters, we p...
Based on a Planck scale underpinning for the universe, we deduce an expression for the gravitational...
Abstract The paper deals with the scale discrepancy between the observed vacuum energy in cosmology ...
In this paper we investigate a possible energy scale dependence of the quantization rules and in par...
In a previously derived geometry-based energetic expression, the Newtonian gravitational constant (G...
The paper deals with the scale discrepancy between the observed vacuum energy in cosmology and the t...
The acceleration of the surface of last scatter (SLS) must somehow reflect the energy content within...
The acceleration of the surface of last scatter (SLS) must somehow reflect the energy content within...
The arguments of statistical nature for the existence of constituents of active gravitational masses...
It has recently been shown that any observed potential can in principle be generated via quantum mec...
We develop a geometro-dynamical approach to the cosmological constant problem (CCP) by invoking a ge...
A series of apparent relations were derived from a hypothetical energetic system, in which a singula...
We prove here that Newton’s universal gravitation and momentum conservation laws together reproduce ...
A comparison of the cosmological vacuum energy density with the vacuum energy density present in Cas...
Some models are presented in which the strength of the gravitational coupling of the potential energ...