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Implications of a positive cosmological constant for general relativity

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arxiv 1706.07482 v1 pith:TCZCSENH submitted 2017-06-22 gr-qc hep-thmath-phmath.MP

classification gr-qchep-thmath-phmath.MP
keywords lambdageneralpositiverelativityconstantcosmologicalframeworkssmall
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abstract

Most of the literature on general relativity over the last century assumes that the cosmological constant $\Lambda$ is zero. However, by now independent observations have led to a consensus that the dynamics of the universe is best described by Einstein's equations with a small but positive $\Lambda$. Interestingly, this requires a drastic revision of conceptual frameworks commonly used in general relativity, \emph{no matter how small $\Lambda$ is.} We first explain why, and then summarize the current status of generalizations of these frameworks to include a positive $\Lambda$, focusing on gravitational waves.

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  1. The $SO(1,4)$ flux-balance laws of de Sitter at quadrupolar order

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    All ten SO(1,4) flux-balance laws for quadrupolar perturbations around de Sitter are derived, including new linear momentum and boost formulas, and the flat limit is recovered.

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