Local measurements of the Hubble parameter obtained from the distance ladder at low redshift are in tension with global values inferred from cosmological standard rulers. A key role in the tension is played by the assumptions on the cosmological history, in particular on the origin of dark energy. Here we consider a scenario where dark energy originates from the amplification of quantum fluctuations of a light field in inflation. We show that spatial correlations inherited from inflationary quantum fluctuations can reduce the Hubble tension down to one standard deviation, thus relieving the problem with respect to the standard cosmological model. Upcoming missions, like Euclid, will be able to test the predictions of models in this class
In the era of precision cosmology, different observational data has led to precise measurements of t...
The energy density associated with Planck length is $\rho_{uv}\propto L_P^{-4}$ while the energy den...
18 pages, LaTeX, talk given by A.O.Barvinsky at QUARKS08 conferenceWe present an overview of a recen...
Local measurements of the Hubble parameter obtained from the distance ladder at low redshift are in ...
We show that a very light scalar field experiencing quantum fluctuations during primordial inflation...
It is accepted in the present cosmology model that the scalar field, which is responsible for the in...
We show that current cosmic acceleration can be explained by an almost massless scalar field experie...
We examine a cosmological model with a dark energy density of the form ρDE(t) = ρX(t) + ρZ(t), wher...
© 2018, The Author(s). We study the quantum backreaction from inflationary fluctuations of a very li...
In this talk, we have shown that current cosmic acceleration can be explained by an almost massless ...
We show that the presence of a temporal electromagnetic field on cosmological scales generates an ef...
We show that vector theories on cosmological scales are excellent candidates for dark energy. We con...
AbstractWe show that holographic dark energy could explain why the current dark energy density is so...
One of the most pressing, modern cosmological mysteries is the cause of the accelerated expansion of...
Homogeneity and correlations in the observed CMB are indicative of some form of cosmological coheren...
In the era of precision cosmology, different observational data has led to precise measurements of t...
The energy density associated with Planck length is $\rho_{uv}\propto L_P^{-4}$ while the energy den...
18 pages, LaTeX, talk given by A.O.Barvinsky at QUARKS08 conferenceWe present an overview of a recen...
Local measurements of the Hubble parameter obtained from the distance ladder at low redshift are in ...
We show that a very light scalar field experiencing quantum fluctuations during primordial inflation...
It is accepted in the present cosmology model that the scalar field, which is responsible for the in...
We show that current cosmic acceleration can be explained by an almost massless scalar field experie...
We examine a cosmological model with a dark energy density of the form ρDE(t) = ρX(t) + ρZ(t), wher...
© 2018, The Author(s). We study the quantum backreaction from inflationary fluctuations of a very li...
In this talk, we have shown that current cosmic acceleration can be explained by an almost massless ...
We show that the presence of a temporal electromagnetic field on cosmological scales generates an ef...
We show that vector theories on cosmological scales are excellent candidates for dark energy. We con...
AbstractWe show that holographic dark energy could explain why the current dark energy density is so...
One of the most pressing, modern cosmological mysteries is the cause of the accelerated expansion of...
Homogeneity and correlations in the observed CMB are indicative of some form of cosmological coheren...
In the era of precision cosmology, different observational data has led to precise measurements of t...
The energy density associated with Planck length is $\rho_{uv}\propto L_P^{-4}$ while the energy den...
18 pages, LaTeX, talk given by A.O.Barvinsky at QUARKS08 conferenceWe present an overview of a recen...