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Weak gravity conjecture in the asymptotical dS and AdS background

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arxiv hep-th/0603127 v2 pith:K3QDPDOE submitted 2006-03-16 hep-th

classification hep-th
keywords asymptoticaltheorycosmologicalgaugesitterspacestringbound
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abstract

The cosmological observations provide a strong evidence that there is a positive cosmological constant in our universe and thus the spacetime is asymptotical de Sitter space. The conjecture of gravity as the weakest force in the asymptotical dS space leads to a lower bound on the U(1) gauge coupling $g$, or equivalently, the positive cosmological constant gets an upper bound $\rho_V \leq g^2 M_p^4$ in order that the U(1) gauge theory can survive in four dimensions. This result has a simple explanation in string theory, i.e. the string scale $\sqrt{\alpha '}$ should not be greater than the size of the cosmic horizon. Our proposal in string theory can be generalized to U(N) gauge theory and gives a guideline to the microscopic explanation of the de Sitter entropy. The similar results are also obtained in the asymptotical anti-de Sitter space.

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  1. De Sitter space constraints on brane tensions and couplings

    hep-th 2024-11 conditional novelty 6.0 of 10

    The Festina Lente bound on particle masses is generalized to p-branes with world-volume Chern-Simons couplings, giving tension bounds in de Sitter space that string theory D-branes satisfy.

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