科技报告详细信息
Simple de Sitter Solutions
Silverstein, Eva ; /Stanford U., Phys. Dept. /SLAC
Stanford Linear Accelerator Center
关键词: Quantum Numbers;    Scalars;    Compactification;    De Sitter Group;    String Theory;   
DOI  :  10.2172/921617
RP-ID  :  SLAC-PUB-13016
RP-ID  :  AC02-76SF00515
RP-ID  :  921617
美国|英语
来源: UNT Digital Library
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【 摘 要 】

We present a framework for de Sitter model building in type IIA string theory, illustrated with specific examples. We find metastable dS minima of the potential for moduli obtained from a compactification on a product of two Nil three-manifolds (which have negative scalar curvature) combined with orientifolds, branes, fractional Chern-Simons forms, and fluxes. As a discrete quantum number is taken large, the curvature, field strengths, inverse volume, and four dimensional string coupling become parametrically small, and the de Sitter Hubble scale can be tuned parametrically smaller than the scales of the moduli, KK, and winding mode masses. A subtle point in the construction is that although the curvature remains consistently weak, the circle fibers of the nilmanifolds become very small in this limit (though this is avoided in illustrative solutions at modest values of the parameters). In the simplest version of the construction, the heaviest moduli masses are parametrically of the same order as the lightest KK and winding masses. However, we provide a method for separating these marginally overlapping scales, and more generally the underlying supersymmetry of the model protects against large corrections to the low-energy moduli potential.

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