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A Note on the Magnitude of the Flux Superpotential

High Energy Physics - Theory 2015-06-17 v1

Abstract

The magnitude of the flux superpotential WfluxW_{flux} plays a crucial role in determining the scales of IIB string compactifications after moduli stabilisation. It has been argued that values of WfluxW_{flux} much less than one are preferred, and even required for physical and consistency reasons. This note revisits these arguments. We establish that the coupling (g) of heavy Kaluza-Klein modes to light states scales as MKK/MPl{M_{KK} / M_{Pl}} (hence is suppressed by two third powers of the inverse volume of compactification) and argue that consistency of the superspace derivative expansion requires gF/M2m3/2/MKK<<1gF/M^2 \sim m_{3/2}/ M_{KK} << 1, where FF is the auxiliary field of the light fields and MM the ultraviolet cutoff. This gives only a mild constraint on the flux superpotential, Wflux<<V1/3W_{flux} << V^{1/3} (where V is the volume of the compactification), which can be easily satisfied for order one values of WfluxW_{flux}. This regime is also statistically favoured and makes the Bousso-Polchinski mechanism for the vacuum energy hierarchically more efficient.

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Cite

@article{arxiv.1310.6694,
  title  = {A Note on the Magnitude of the Flux Superpotential},
  author = {Michele Cicoli and Joseph P. Conlon and Anshuman Maharana and Fernando Quevedo},
  journal= {arXiv preprint arXiv:1310.6694},
  year   = {2015}
}

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14 pages