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Knowledge Limits in Cosmology

Published online by Cambridge University Press:  25 May 2016

Menas Kafatos*
Affiliation:
Earth Observing and Space Research Program, Institute for Computational Sciences and Informatics and Department of Physics, George Mason University, Fairfax, VA 22030

Abstract

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In cosmology one faces the observational challenge that knowledge about distant regions of the universe is dependent on assumptions one makes about these regions which are themselves coupled to the observations. Within the framework of the Friedmann-Robertson-Walker big bang models the universe becomes opaque to its own radiation at z ≈ 1,000 and the earlier, and more distant, regions of the universe are not directly accessible through observations. Other challenges exist such as possible merging of extended distant sources and confusion of spectra from distant galaxies. One, therefore, encounters horizons in our understanding of the universe. Such horizons exist in any mode of description. To use the quantum analogy, the observer is always part of the system under study, the universe, and a description of the universe entails including the observer and observing apparatus. Since the early universe should be described in quantum terms, it follows that non-locality in the universe is not an a-priori requirement but the outcome of the observing process itself. As such, the flatness and horizon problems may not be preconditions on theoretical models.

Type
Part I: Invited Reviews
Copyright
Copyright © Kluwer 1996 

References

Barrow, J.D. (1988), Q.J1. R. Astr. Soc. 29, 101117.Google Scholar
Barrow, J. D. and Tipler, F.J. 1986, The Anthropic Cosmological Principle, Oxford Univ. Press, Oxford.Google Scholar
Berry, M. (1976), Principles of Cosmology and Gravitation, Cambridge Univ. Press, Cambridge.Google Scholar
Dirac, P.A.M. (1937), Nature 139, 323.CrossRefGoogle Scholar
Dressler, A. et al. (1987), Ap. J. 236, 531.Google Scholar
Geller, M. J. and Huchra, J. (1989), Science 246, 897.CrossRefGoogle Scholar
Guth, A. and Steinhardt, P.J. (1984), Scientific American, June 1984, 116128.CrossRefGoogle Scholar
Kafatos, M. (1989) in Bell's Theorem Quantum Theory and Conceptions of the Universe, ed. M-Kafatos, , 195, Kluwer Academic.Google Scholar
Kafatos, M. and Nadeau, R. (1990), The Conscious Universe: Part and Whole in Modern Physical Theory.Google Scholar
Narlikar, J. (1983), Introduction to Cosmology, Jones and Bartlett, New York.Google Scholar
Rowan-Robinson, M. (1985), The Cosmological Distance Ladder, W.H. Freeman and Co., New York.Google Scholar
Schramm, D.N. (1983), Physics Today, April 1983, 2733.CrossRefGoogle Scholar