The most exciting future observation in cosmology will feature a monitoring of the cosmic expansion in real time, unlike anything that has ever been attempted before. This campaign will uncover crucial physical properties of the various constituents in the universe, and perhaps answer a simpler question concerning whether or not the cosmic expansion is even accelerating. An unambiguous yes/no response to this query will significantly impact cosmology, of course, but also the standard model of particle physics. Here, we discuss - in a straightforward way - how to understand the so-called 'redshift drift' sought by this campaign, and why its measurement will help us refine the standard-model parameters if the answer is 'yes.' A 'no' answer, o...
The cosmological redshift drift could lead to the next step in high-precision cosmic geometric obser...
Mapping the expansion history of the universe is a compelling task of physical cosmology, especially...
The comparison of redshift-distance relationship for high and low-redshift supernovae revealed the s...
The most exciting future observation in cosmology will feature a monitoring of the cosmic expansion ...
Nearly a century after the discovery that we live in an expanding Universe, and two decades after th...
Redshift drift provides a direct kinematic measurement of cosmic acceleration but it occurs with a c...
International audienceThe redshift drift (also known as the Sandage Test) is a model-independent pro...
International audienceContext. The cosmological concordance model (ΛCDM) matches the cosmological ob...
Observations of distant supernovae indicate that the Universe is now in a phase of accelerated expan...
bservations of distant supernovae indicate that the Universe is now in a phase of accelerated expans...
A new cosmological era began with the discovery of accelerating expansion of the Universe. The devia...
Determination of the expansion and acceleration history of the universe is one of the fundamental go...
Measurements of the growth rate of structure f at different redshifts can discriminate the origin of...
The cosmological redshift drift could lead to the next step in high-precision cosmic geometric obser...
Mapping the expansion history of the universe is a compelling task of physical cosmology, especially...
The comparison of redshift-distance relationship for high and low-redshift supernovae revealed the s...
The most exciting future observation in cosmology will feature a monitoring of the cosmic expansion ...
Nearly a century after the discovery that we live in an expanding Universe, and two decades after th...
Redshift drift provides a direct kinematic measurement of cosmic acceleration but it occurs with a c...
International audienceThe redshift drift (also known as the Sandage Test) is a model-independent pro...
International audienceContext. The cosmological concordance model (ΛCDM) matches the cosmological ob...
Observations of distant supernovae indicate that the Universe is now in a phase of accelerated expan...
bservations of distant supernovae indicate that the Universe is now in a phase of accelerated expans...
A new cosmological era began with the discovery of accelerating expansion of the Universe. The devia...
Determination of the expansion and acceleration history of the universe is one of the fundamental go...
Measurements of the growth rate of structure f at different redshifts can discriminate the origin of...
The cosmological redshift drift could lead to the next step in high-precision cosmic geometric obser...
Mapping the expansion history of the universe is a compelling task of physical cosmology, especially...
The comparison of redshift-distance relationship for high and low-redshift supernovae revealed the s...