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D7-brane chaotic inflation

机译:D7脑膜混沌通气

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We analyze string-theoretic large-field inflation in the regime of spontaneously-broken supergravity with conventional moduli stabilization by fluxes and non-perturbative effects. The main ingredient is a shift-symmetric K?hler potential, supplemented by flux-induced shift symmetry breaking in the superpotential. The central technical observation is that all these features are present for D7-brane position moduli in Type IIB orientifolds, potentially allowing for a realization of the axion monodromy proposal in a string theory compactification. Furthermore, our model is explicit enough to address issues of control and moduli stabilization quantitatively. On the one hand, in the large complex structure regime the D7-brane position moduli inherit a shift symmetry from their mirror-dual Type IIA Wilson lines. On the other hand, the Type IIB flux superpotential generically breaks this shift symmetry and allows, by appealing to the large flux discretuum, to tune the relevant coefficients to be small. The shift-symmetric direction in D7-brane moduli space can then play the role of the inflaton: While the D7-brane circles a certain trajectory on the Calabi–Yau many times, the corresponding F -term energy density grows only very slowly, thanks to the above-mentioned tuning of the flux. To be successful our model requires that the dilaton, all complex structure moduli and all D7-brane moduli except the inflaton are fixed at leading order by fluxes. Then the large-field inflationary trajectory can be realized in a regime where K?hler, complex structure and other brane moduli are stabilized in a conventional manner, as we demonstrate using the example of the Large Volume Scenario.
机译:我们用通量和非扰动效应对具有常规模量稳定作用的自发破裂超重力状态下的弦理论大场膨胀进行了分析。主要成分是位移对称的K?hler势,辅以通量引起的超势中的位移对称性破坏。中心的技术观察是,所有这些特征都存在于IIB型定向中的D7叶片位置模量中,潜在地允许在弦理论压实中实现轴突单峰方案。此外,我们的模型足够明确,可以定量解决控制和模稳定问题。一方面,在大的复杂结构体系中,D7叶片位置模量从其镜像对偶IIA型威尔逊谱线继承了位移对称性。另一方面,IIB型通量超电势一般会打破这种偏移对称性,并通过吸引大通量离散度而允许将相关系数调整为较小。然后,D7-布雷恩模量空间中的位移对称方向可以起充气的作用:虽然D7-布雷恩在卡拉比丘上多次绕过一定的轨迹,但相应的F项能量密度仅非常缓慢地增长,这要归功于调整上述通量。为了使我们的模型成功,需要将通量将膨胀子,所有复杂结构的模量和除充气子之外的所有D7膜模量固定在前导位置。然后,如我们使用大体积场景的示例所示,可以在以常规方式稳定Khhler,复杂结构和其他Brane模量的状态下实现大场膨胀轨迹。

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