AbstractIn this Letter we demonstrate that any interaction of pressureless dark matter with holographic dark energy, whose infrared cutoff is set by the Hubble scale, implies a constant ratio of the energy densities of both components thus solving the coincidence problem. The equation of state parameter is obtained as a function of the interaction strength. For a variable degree of saturation of the holographic bound the energy density ratio becomes time dependent which is compatible with a transition from decelerated to accelerated expansion
We outline a scenario in which dark energy is associated with the particle horizon. An energy densit...
AbstractWe present a holographic dark-energy model in which the Newton constant GN scales in such a ...
In this paper we study cosmological application of holographic dark energy density in the Brans-Dick...
AbstractIn this Letter it is shown that when the holographic dark energy is combined with the Brans–...
AbstractA model for holographic dark energy is proposed, following the idea that the short distance ...
AbstractWe show that holographic dark energy could explain why the current dark energy density is so...
AbstractSo far, there have been no theories or observational data that deny the presence of interact...
It has been persuasively argued that the number of the effective degrees of freedom of a macroscopic...
We show that an inflation with the number of e-folds $N\simeq 65$ solves the cosmic coincidence prob...
AbstractWe propose an infrared cut-off for the holographic dark energy, which besides the square of ...
AbstractWe investigate a model of the interacting holographic dark energy with cold dark matter (CDM...
We explore a model of interacting dark energy where the dark energy density is related to the Hubble...
AbstractA general holographic relation between UV and IR cutoff of an effective field theory is prop...
Following the holographic principle, which suggests that the energy density of dark energy may be pr...
In this paper we consider the bulk-brane interaction to obtain the equation of state for the hologra...
We outline a scenario in which dark energy is associated with the particle horizon. An energy densit...
AbstractWe present a holographic dark-energy model in which the Newton constant GN scales in such a ...
In this paper we study cosmological application of holographic dark energy density in the Brans-Dick...
AbstractIn this Letter it is shown that when the holographic dark energy is combined with the Brans–...
AbstractA model for holographic dark energy is proposed, following the idea that the short distance ...
AbstractWe show that holographic dark energy could explain why the current dark energy density is so...
AbstractSo far, there have been no theories or observational data that deny the presence of interact...
It has been persuasively argued that the number of the effective degrees of freedom of a macroscopic...
We show that an inflation with the number of e-folds $N\simeq 65$ solves the cosmic coincidence prob...
AbstractWe propose an infrared cut-off for the holographic dark energy, which besides the square of ...
AbstractWe investigate a model of the interacting holographic dark energy with cold dark matter (CDM...
We explore a model of interacting dark energy where the dark energy density is related to the Hubble...
AbstractA general holographic relation between UV and IR cutoff of an effective field theory is prop...
Following the holographic principle, which suggests that the energy density of dark energy may be pr...
In this paper we consider the bulk-brane interaction to obtain the equation of state for the hologra...
We outline a scenario in which dark energy is associated with the particle horizon. An energy densit...
AbstractWe present a holographic dark-energy model in which the Newton constant GN scales in such a ...
In this paper we study cosmological application of holographic dark energy density in the Brans-Dick...