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Scattering and Sequestering of Blow-Up Moduli in Local String Models

Abstract:
We study the scattering and sequestering of blow-up fields - either local to or distant from a visible matter sector - through a CFT computation of the dependence of physical Yukawa couplings on the blow-up moduli. For a visible sector of D3-branes on orbifold singularities we compute the disk correlator < \tau_s^{(1)} \tau_s^{(2)} ... \tau_s^{(n)} \psi \psi \phi > between orbifold blow-up moduli and matter Yukawa couplings. For n = 1 we determine the full quantum and classical correlator. This result has the correct factorisation onto lower 3-point functions and also passes numerous other consistency checks. For n > 1 we show that the structure of picture-changing applied to the twist operators establishes the sequestering of distant blow-up moduli at disk level to all orders in \alpha'. We explain how these results are relevant to suppressing soft terms to scales parametrically below the gravitino mass. By giving vevs to the blow-up fields we can move into the smooth limit and thereby derive CFT results for the smooth Swiss-cheese Calabi-Yaus that appear in the Large Volume Scenario.
Publication status:
Published

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Publisher copy:
10.1007/JHEP12(2011)028

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Journal:
JHEP More from this journal
Volume:
1112
Issue:
12
Pages:
028
Publication date:
2011-09-19
DOI:
EISSN:
1029-8479
ISSN:
1029-8479


Keywords:
Pubs id:
pubs:205555
UUID:
uuid:efea30fc-7cc9-4550-a65e-0794dfc0bb75
Local pid:
pubs:205555
Source identifiers:
205555
Deposit date:
2012-12-19
ARK identifier:

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