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Large-Volume Flux Compactifications: Moduli Spectrum and D3/D7 Soft Supersymmetry Breaking

机译:大批量通量压缩:模量谱和D3 / D7软超对称破坏

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摘要

We present an explicit calculation of the spectrum of a general class of string models, corresponding to Calabi-Yau flux compactifications with h_{1,2}>h_{1,1}>1 with leading perturbative and non-perturbative corrections, in which all geometric moduli are stabilised as in hep-th/0502058. The volume is exponentially large, leading to a range of string scales from the Planck mass to the TeV scale, realising for the first time the large extra dimensions scenario in string theory. We provide a general analysis of the relevance of perturbative and non-perturbative effects and the regime of validity of the effective field theory. We compute the spectrum in the moduli sector finding a hierarchy of masses depending on inverse powers of the volume. We also compute soft supersymmetry breaking terms for particles living on D3 and D7 branes. We find a hierarchy of soft terms corresponding to `volume dominated' F-term supersymmetry breaking. F-terms for Kahler moduli dominate both those for dilaton and complex structure moduli and D-terms or other de Sitter lifting terms. This is the first class of string models in which soft supersymmetry breaking terms are computed after fixing all geometric moduli. We outline several possible applications of our results, both for cosmology and phenomenology and point out the differences with the less generic KKLT vacua.
机译:我们给出了一般类别的弦模型的频谱的显式计算,对应于具有先导扰动和非扰动校正的h_ {1,2}> h_ {1,1}> 1的Calabi-Yau通量压缩。如hep-th / 0502058中所述,所有几何模量均已稳定。体积成倍增长,导致了从普朗克质量到TeV尺度的各种弦尺度,从而首次实现了弦理论中的大尺寸场景。我们对扰动和非扰动效应的相关性以及有效场论的有效性机制进行了一般性分析。我们计算模量扇区中的频谱,从而根据体积的反幂找到质量的层次。我们还计算了D3和D7黄铜上存在的粒子的软超对称破裂项。我们发现软术语的层次结构对应于“体积主导”的F项超对称破坏。 Kahler模量的F项同时控制了dilaton和复杂结构模量的F项以及D项或其他de Sitter提升项。这是第一类字符串模型,其中,在固定所有几何模量之后,计算软超对称破坏项。我们概述了我们的结果在宇宙学和现象学上的几种可能应用,并指出了与通用性较低的KKLT真空的区别。

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