International audienceThis work determines the degree to which a traditional analysis of the standard model of cosmology (ΛCDM) based on type Ia supernovae can identify deviations from a cosmological constant in the form of a redshift-dependent dark energy equation of state w(z). We introduce and apply a novel random curve generator to simulate instances of w(z) from constraint families with increasing distinction from a cosmological constant. After producing a series of mock catalogs of binned type Ia supernovae corresponding to each w(z) curve, we perform a standard ΛCDM analysis to estimate the corresponding posterior densities of the absolute magnitude of type Ia supernovae, the present-day matter density, and the equation of state para...
So far large and different data sets revealed the accelerated expansion rate of the Universe, which ...
The recent observations of type Ia supernovae suggest that the universe is accelerating now and dece...
Observations of high redshift type Ia supernovae indicate that the universe is accelerating, fueled ...
International audienceThis work determines the degree to which a traditional analysis of the standar...
Type Ia supernova data have recently become strong enough to enable, for the first time, constraints...
Type Ia supernova data have recently become strong enough to enable, for the first time, constraints...
We have reanalysed constraints on the equation of state parameter, w_Q = P/rho, of the dark energy, ...
The conceptual difficulties associated with a cosmological constant have led to the investigation of...
Observation of thousands of type Ia supernovae should offer the most direct approach to probe the da...
International audienceWe present the first Hubble diagram of superluminous supernovae (SLSNe) out to...
We combine the CfA3 supernova Type Ia (SN Ia) sample with samples from the literature to calculate i...
The understanding of the accelerated expansion of the Universe poses one of the most fundamental que...
This dissertation chronicles the development of the "Union" SN Ia analyses. These analyses address t...
We reconstruct the dark energy density X(z) as a free function from current Type Ia supernova (SN Ia...
The dark energy component of the Universe is often interpreted either in terms of a cosmological con...
So far large and different data sets revealed the accelerated expansion rate of the Universe, which ...
The recent observations of type Ia supernovae suggest that the universe is accelerating now and dece...
Observations of high redshift type Ia supernovae indicate that the universe is accelerating, fueled ...
International audienceThis work determines the degree to which a traditional analysis of the standar...
Type Ia supernova data have recently become strong enough to enable, for the first time, constraints...
Type Ia supernova data have recently become strong enough to enable, for the first time, constraints...
We have reanalysed constraints on the equation of state parameter, w_Q = P/rho, of the dark energy, ...
The conceptual difficulties associated with a cosmological constant have led to the investigation of...
Observation of thousands of type Ia supernovae should offer the most direct approach to probe the da...
International audienceWe present the first Hubble diagram of superluminous supernovae (SLSNe) out to...
We combine the CfA3 supernova Type Ia (SN Ia) sample with samples from the literature to calculate i...
The understanding of the accelerated expansion of the Universe poses one of the most fundamental que...
This dissertation chronicles the development of the "Union" SN Ia analyses. These analyses address t...
We reconstruct the dark energy density X(z) as a free function from current Type Ia supernova (SN Ia...
The dark energy component of the Universe is often interpreted either in terms of a cosmological con...
So far large and different data sets revealed the accelerated expansion rate of the Universe, which ...
The recent observations of type Ia supernovae suggest that the universe is accelerating now and dece...
Observations of high redshift type Ia supernovae indicate that the universe is accelerating, fueled ...