We propose a non-parametric method of smoothing supernova data over redshift using a Gaussian kernel in order to reconstruct important cosmological quantities including H(z) and w(z) in a model-independent manner. This method is shown to be successful in discriminating between different models of dark energy when the quality of data is commensurate with that expected from the future Supernova Acceleration Probe (SNAP). We find that the Hubble parameter is especially well determined and useful for this purpose. The look-back time of the Universe may also be determined to a very high degree of accuracy (≲0.2 per cent) using this method. By refining the method, it is also possible to obtain reasonable bounds on the equation of state of dark en...
Abstract In the present paper, we investigate the cosmographic problem using the bias–variance trade...
Determination of the expansion and acceleration history of the universe is one of the fundamental go...
The explanation of the accelerated expansion of the Universe poses one of the most fundamental quest...
We propose a non-parametric method of smoothing supernova data over redshift using a Gaussian kernel...
We have improved upon the method of smoothing supernovae data to reconstruct the expansion history o...
We present a method for measuring the cosmic expansion history H(z) in uncorrelated redshift bins, a...
Reconstructing the evolution history of the dark energy equation of state parameter w(z) directly fr...
Observation of thousands of type Ia supernovae should offer the most direct approach to probe the da...
The understanding of the accelerated expansion of the Universe poses one of the most fundamental que...
The use of Type Ia supernovae as calibrated standard candles is one of the most powerful tools to ...
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...
13 pages, submitted to A&AThe use of Type Ia supernovae as calibrated standard candles is one of the...
Abstract In the present paper, we investigate the dark energy equation of state using the Gaussian p...
Type Ia supernova data have recently become strong enough to enable, for the first time, constraints...
Abstract In the present paper, we investigate the cosmographic problem using the bias–variance trade...
Determination of the expansion and acceleration history of the universe is one of the fundamental go...
The explanation of the accelerated expansion of the Universe poses one of the most fundamental quest...
We propose a non-parametric method of smoothing supernova data over redshift using a Gaussian kernel...
We have improved upon the method of smoothing supernovae data to reconstruct the expansion history o...
We present a method for measuring the cosmic expansion history H(z) in uncorrelated redshift bins, a...
Reconstructing the evolution history of the dark energy equation of state parameter w(z) directly fr...
Observation of thousands of type Ia supernovae should offer the most direct approach to probe the da...
The understanding of the accelerated expansion of the Universe poses one of the most fundamental que...
The use of Type Ia supernovae as calibrated standard candles is one of the most powerful tools to ...
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...
13 pages, submitted to A&AThe use of Type Ia supernovae as calibrated standard candles is one of the...
Abstract In the present paper, we investigate the dark energy equation of state using the Gaussian p...
Type Ia supernova data have recently become strong enough to enable, for the first time, constraints...
Abstract In the present paper, we investigate the cosmographic problem using the bias–variance trade...
Determination of the expansion and acceleration history of the universe is one of the fundamental go...
The explanation of the accelerated expansion of the Universe poses one of the most fundamental quest...