We describe briefly a novel interpretation of the physical nature of dark energy (DE), based on the vacuum fluctuations model by Gurzadyan & Xue, and describe an internally consistent solution for the behavor of DE as a function of redshift. A key choice is the nature of the upper bound used for the computation of energy density contributions by vacuum modes. We show that use of the comoving horizon radius produces a viable model, whereas use of the proper horizon radius is inconsistent with the observations. After introduction of a single phenomenological parameter, the model is consistent with all of the curently available data, and fits them as well as the standard cosmological constant model, while making testable predictions. Whi...
AbstractIn the cosmological context an effective quantum field theory describing the behavior of vis...
Numerous upcoming observations, such as WFIRST, BOSS, BigBOSS, LSST, Euclid, and Planck, will constr...
Context. Dark energy is now one of the most important and topical problems in cosmology. T...
We describe briefly a novel interpretation of the physical nature of dark energy (DE), based on the ...
We describe briefly a novel interpretation of the physical nature of dark energy (DE), based on the ...
The energy density associated with the Planck length is ρUVα L-4P while the energy density...
The energy density associated with Planck length is $\rho_{uv}\propto L_P^{-4}$ while the energy den...
Abstract We study cosmology with running dark energy. The energy density of dark energy is obtained ...
Mounting observational data confirm that about 73 % of the energy density con-sists of dark energy w...
International audienceThe acceleration of the expansion of the Universe which has been identified in...
International audienceThe acceleration of the expansion of the Universe which has been identified in...
Abstract: We carried out a study of the properties of the λφ4 field solutions. By constructing Gauss...
International audienceThe acceleration of the expansion of the Universe which has been identified in...
The cosmological constant appearing in Einstein’s equations is a key element of the ΛCDM standard co...
International audienceThe acceleration of the expansion of the Universe which has been identified in...
AbstractIn the cosmological context an effective quantum field theory describing the behavior of vis...
Numerous upcoming observations, such as WFIRST, BOSS, BigBOSS, LSST, Euclid, and Planck, will constr...
Context. Dark energy is now one of the most important and topical problems in cosmology. T...
We describe briefly a novel interpretation of the physical nature of dark energy (DE), based on the ...
We describe briefly a novel interpretation of the physical nature of dark energy (DE), based on the ...
The energy density associated with the Planck length is ρUVα L-4P while the energy density...
The energy density associated with Planck length is $\rho_{uv}\propto L_P^{-4}$ while the energy den...
Abstract We study cosmology with running dark energy. The energy density of dark energy is obtained ...
Mounting observational data confirm that about 73 % of the energy density con-sists of dark energy w...
International audienceThe acceleration of the expansion of the Universe which has been identified in...
International audienceThe acceleration of the expansion of the Universe which has been identified in...
Abstract: We carried out a study of the properties of the λφ4 field solutions. By constructing Gauss...
International audienceThe acceleration of the expansion of the Universe which has been identified in...
The cosmological constant appearing in Einstein’s equations is a key element of the ΛCDM standard co...
International audienceThe acceleration of the expansion of the Universe which has been identified in...
AbstractIn the cosmological context an effective quantum field theory describing the behavior of vis...
Numerous upcoming observations, such as WFIRST, BOSS, BigBOSS, LSST, Euclid, and Planck, will constr...
Context. Dark energy is now one of the most important and topical problems in cosmology. T...