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Variable cosmological constant as a Planck scale effect
DOI:10.1016/j.physletb.2003.09.016.png)
摘要
En 中文
We construct a semiclassical Friedmann-Lemaitre-Robertson-Walker (FLRW) cosmological model assuming a running cosmological constant (CC). It turns out that the CC becomes variable at arbitrarily low energies due to the remnant quantum effects of the heaviest particles. e.g., the Planck scale physics. These effects are universal in the sense that they lead to a low-energy structure common to a large class of high-energy theories. Remarkably, the uncertainty concerning the unknown high-energy dynamics is accumulated into a single parameter v, such that the model has an essential predictive power. Future Type la supernovae experiments (like SNAP) can verify whether this framework is correct. For the flat FLRW case and a moderate value nu similar to 10(-2), we predict an increase of 10-20% in the value of Ohm(Lambda) at redshifts z = 1-1.5 perfectly reachable by SNAP. (C) 2003 Published by Elsevier B.V.
Keyword:
SUPERNOVAE
SYMMETRY
GRAVITY
LAMBDA
FATE
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期刊
IF:
4.5
论文数:
3.2W
被引数:
7.3W
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引用论文
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Scaling behavior of the cosmological constant and the possible existence of new forces and new light degrees of freedom
PHYSICS LETTERS B
IF4.5

