Is Cosmology Solved?
arXiv:astro-ph/9810497 · doi:10.1086/316322
Abstract
We have fossil evidence from the thermal background radiation that our universe expanded from a considerably hotter denser state. We have a well defined and testable description of the expansion, the relativistic Friedmann-Lemaitre model. Its observational successes are impressive but I think hardly enough for a convincing scientific case. The lists of observational constraints and free hypotheses within the model have similar lengths. The scorecard on the search for concordant measures of the mass density parameter and the cosmological constant shows that the high density Einstein-de Sitter model is challenged, but that we cannot choose between low density models with and without a cosmological constant. That is, the relativistic model is not strongly overconstrained, the usual test of a mature theory. Work in progress will greatly improve the situation and may at last yield a compelling test. If so, and the relativistic model survives, it will close one line of research in cosmology: we will know the outlines of what happened as our universe expanded and cooled from high density. It will not end research: some of us will occupy ourselves with the details of how galaxies and other large-scale structures came to be the way they are, others with the issue of what our universe was doing before it was expanding. The former is being driven by rapid observational advances. The latter is being driven mainly by theory, but there are hints of observational guidance.
13 pages, 3 figures. To be published in PASP as part of the proceedings of the Smithsonian debate, Is Cosmology Solved?
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- Infared Observations of Nebular Emission Lines from Galaxies at z = 3
- Testing Modified Newtonian Dynamics with Low Surface Brightness Galaxies --Rotation curve fits-
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Cited by in corpus (9)
- Problems for MOND in Clusters and the Ly-alpha Forest
- A Limit on the Cosmological Mass Density and Power Spectrum from the Rotation Curves of Low Surface Brightness Galaxies
- The formation of cosmic structure with modified Newtonian dynamics
- Undermining the Cosmological Principle: Almost Isotropic Observations in Inhomogeneous Cosmologies
- Astrophysical Constraints on Modifying Gravity at Large Distances
- Detection of CO (2-1) and Radio Continuum Emission from the z = 4.4 QSO BRI 1335-0417
- Python I, II, and III CMB Anisotropy Measurement Constraints on Open and Flat-Lambda CDM Cosmogonies
- Cosmological Implications and Physical Properties of an X-Ray Flux-Limited Sample of Galaxy Clusters
- Conceptual Problems of Fractal Cosmology