Varying Constants, Gravitation and Cosmology

Переменные фундаментальные константы, гравитация и космология
Jean-Philippe Uzan
2011-03-29

big bang nucleosynthesisgeneral relativitylocal position invarianceuniversality of free fallvarying fundamental constants
Fundamental constants are a cornerstone of our physical laws. Any constant varying in space and/or time would reflect the existence of an almost massless field that couples to matter. This will induce a violation of the universality of free fall. Thus, it is of utmost importance for our understanding of gravity and of the domain of validity of general relativity to test for their constancy. We detail the relations between the constants, the tests of the local position invariance and of the universality of free fall. We then review the main experimental and observational constraints that have been obtained from atomic clocks, the Oklo phenomenon, solar system observations, meteorite dating, quasar absorption spectra, stellar physics, pulsar timing, the cosmic microwave background and big bang nucleosynthesis. At each step we describe the basics of each system, its dependence with respect to the constants, the known systematic effects and the most recent constraints that have been obtained. We then describe the main theoretical frameworks in which the low-energy constants may actually be varying and we focus on the unification mechanisms and the relations between the variation of different constants. To finish, we discuss the more speculative possibility of understanding their numerical values and the apparent fine-tuning that they confront us with.
1
Constraints on varying constants come from diverse systems, including atomic clocks, Oklo, Solar System observations, meteorites, quasars, stellar physics, pulsars, the CMB, and big bang nucleosynthesis.
2
Spatial or temporal variation of fundamental constants would imply an almost massless field coupled to matter and consequently violate the universality of free fall.
3
Testing constant values directly probes local position invariance and the validity of general relativity.
4
The review identifies systematic effects and derives the dependence of each observational system on fundamental constants when assessing current constraints.
5
Theoretical frameworks involving unification mechanisms predict relationships between variations in different low-energy constants and may address their numerical values and apparent fine-tuning.

Fundamental physical constants and their manifestations in gravitational, cosmological, and astrophysical systems

Spatial and temporal variation of fundamental constants, its links to violations of local position invariance and universality of free fall, and the resulting experimental and observational constraints

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2011-03-29
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Jean-Philippe Uzan
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