A general covariant local field theory of the holographic dark energy model is presented. It turns out the low energy effective theory of the holographic dark energy is the massive gravity theory whose graviton has 3 polarisations, including one scalar mode and two tensor modes. The Compton wavelength is the size of the future event horizon of the universe. The UV-IR correspondence in the holographic dark energy model stems from the scalar graviton's strong coupling at the energy scale that marks the breaking down of the effective field theory
AbstractSo far, there have been no theories or observational data that deny the presence of interact...
Many astrophysics data show that our universe has a critical energy density, and 73% of it is dark e...
AbstractIn the cosmological context an effective quantum field theory describing the behavior of vis...
AbstractWe present a generalized version of holographic dark energy arguing that it must be consider...
We discuss two Lagrangian interacting dark energy models in the context of the holographic principle...
The physical origin of holographic dark energy (HDE) is investigated. The main existing explanations...
We use the generalized holographic dark energy model, in which both the cosmological constant (CC) a...
We propose the generalized holographic dark energy model where the infrared cutoff is identified wit...
The possible holographic origin of dark energy is investigated. The main existing explanations, name...
We propose a universal description of dark energy and modified gravity that includes all single-fiel...
The discovery of cosmic acceleration has triggered a consistent body of theoretical work aimed at mo...
International audienceThe discovery of cosmic acceleration has triggered a consistent body of theore...
We study the perturbation of holographic dark energy and find it to be stable. We study the fate of ...
The f(R) gravity theory is considered. It is a gravitational theory that generalizes the Einstein-Hi...
We study cosmological applications of the holographic energy density. Considering the holographic en...
AbstractSo far, there have been no theories or observational data that deny the presence of interact...
Many astrophysics data show that our universe has a critical energy density, and 73% of it is dark e...
AbstractIn the cosmological context an effective quantum field theory describing the behavior of vis...
AbstractWe present a generalized version of holographic dark energy arguing that it must be consider...
We discuss two Lagrangian interacting dark energy models in the context of the holographic principle...
The physical origin of holographic dark energy (HDE) is investigated. The main existing explanations...
We use the generalized holographic dark energy model, in which both the cosmological constant (CC) a...
We propose the generalized holographic dark energy model where the infrared cutoff is identified wit...
The possible holographic origin of dark energy is investigated. The main existing explanations, name...
We propose a universal description of dark energy and modified gravity that includes all single-fiel...
The discovery of cosmic acceleration has triggered a consistent body of theoretical work aimed at mo...
International audienceThe discovery of cosmic acceleration has triggered a consistent body of theore...
We study the perturbation of holographic dark energy and find it to be stable. We study the fate of ...
The f(R) gravity theory is considered. It is a gravitational theory that generalizes the Einstein-Hi...
We study cosmological applications of the holographic energy density. Considering the holographic en...
AbstractSo far, there have been no theories or observational data that deny the presence of interact...
Many astrophysics data show that our universe has a critical energy density, and 73% of it is dark e...
AbstractIn the cosmological context an effective quantum field theory describing the behavior of vis...