Supernovae and Cosmology
arXiv:0802.4154 · doi:10.1007/s10714-007-0545-9
Abstract
The extreme luminosity and their fairly unique temporal behaviour have made supernovae a superb tool to measure distances in the universe. As complex astrophysical events they provide interesting insights into explosion physics, explosive nucleosynthesis, hydrodynamics of the explosion and radiation transport. They are an end product of stellar evolution and provide clues to the stellar composition. Since they can be observed at large distances they have become critical probes to further explore astrophysical effects, like dust properties in external galaxies and the star formation history of galaxies. Some of the astrophysics interferes with the cosmological applications of supernovae. The local velocity field, distorted by the gravitational attraction of the local large scale structure, and the reddening law appear at the moment the major limitations in the accuracy with which cosmological parameters can be determined. These absorption effects can introduce a secondary bias into the observations of the distant supernovae, which needs to be carefully evaluated. Supernovae have been used for the measurement of the Hubble constant, i.e. the current expansion rate of the universe, and the accelerated cosmic expansion directly inferred from the apparent faintness of the distant supernovae.
Published in General Relativity and Gravitation, 40, 221
References in corpus (16)
- The Supernova -- Gamma-Ray Burst Connection
- New Hubble Space Telescope Discoveries of Type Ia Supernovae at z > 1: Narrowing Constraints on the Early Behavior of Dark Energy
- Observational Constraints on the Nature of the Dark Energy: First Cosmological Results from the ESSENCE Supernova Survey
- Improved Distances to Type Ia Supernovae with Multicolor Light Curve Shapes: MLCS2k2
- The Peculiar SN 2005hk: Do Some Type Ia Supernovae Explode as Deflagrations?
- SN 2004aw: Confirming Diversity of Type Ic Supernovae
- On the Origin of the Type Ia Supernova Width-Luminosity Relation
- ESC and KAIT Observations of the Transitional Type Ia SN 2004eo
- Delayed detonations in full-star models of Type Ia supernova explosions
- ESC observations of SN 2005cf. I. Photometric Evolution of a Normal Type Ia Supernova
- The Type Ia supernova 2004S, a clone of SN 2001el, and the optimal photometric bands for extinction estimation
- Multi-dimensional simulations of radiative transfer in Type Ia supernovae
- The Velocity Field of the Local Universe from Measurements of Type Ia Supernovae
- Light curves for off-centre ignition models of type Ia supernovae
- Report by the ESA-ESO Working Group on Fundamental Cosmology
- Rest-Frame R-band Lightcurve of a z~1.3 Supernova Obtained with Keck Laser Adaptive Optics