English

U-Folds From Geodesics in Moduli Space

High Energy Physics - Theory 2024-01-17 v2

Abstract

We exploit the presence of moduli fields in the AdS3×S3×CY2{\rm AdS}_3\times { S}^3\times CY_2, where CY2=T4CY_2=T^4 or K3K3, solution to Type IIB superstring theory, to construct a U-fold solution with geometry AdS2×S1×S3×CY2{\rm AdS}_2\times S^1\times {\rm S}^3\times CY_2. This is achieved by giving a non-trivial dependence of the moduli fields in SO(4,n)/SO(4)×SO(n){\rm SO}(4,n)/{\rm SO}(4)\times {\rm SO}(n) (n=4n=4 for CY2=T4CY_2=T^4 and n=20n=20 for CY2=K3CY_2=K3 ), on the coordinate η\eta of a compact direction S1S^1 along the boundary of AdS3{\rm AdS}_3, so that these scalars, as functions of η\eta, describe a geodesic on the corresponding moduli space. The back-reaction of these evolving scalars on spacetime amounts to a splitting of AdS3{\rm AdS}_3 into AdS2×S1{\rm AdS}_2\times S^1 with a non-trivial monodromy along S1S^1 defined by the geodesic. Choosing the monodromy matrix in SO(4,n;Z){\rm SO}(4,n;\,\mathbb{Z}), this supergravity solution is conjectured to be a consistent superstring background. We generalize this construction starting from an ungauged theory in D=2dD=2d, dd odd, describing scalar fields non-minimally coupled to (d1)(d-1)-forms and featuring solutions with topology AdSd×Sd{\rm AdS}_d\times S^d, and moduli scalar fields. We show, in this general setting, that giving the moduli fields a geodesic dependence on the η\eta coordinate of an S1S^1 at the boundary of AdSd{\rm AdS}_d is sufficient to split this space into AdSd1×S1{\rm AdS}_{d-1}\times S^1, with a monodromy along S1S^1 defined by the starting and ending points of the geodesic. This mechanism seems to be at work in the known J-fold solutions in D=10D=10 Type IIB theory and hints towards the existence of similar solutions in the Type IIB theory compactified on CY2CY_2. We argue that the holographic dual theory on these backgrounds is a 1+0 CFT on an interface in the 1+1 theory at the boundary of the original AdS3{\rm AdS}_3.

Keywords

Cite

@article{arxiv.2401.04209,
  title  = {U-Folds From Geodesics in Moduli Space},
  author = {D. Astesiano and D. Ruggeri and M. Trigiante},
  journal= {arXiv preprint arXiv:2401.04209},
  year   = {2024}
}

Comments

47 pages

R2 v1 2026-06-28T14:11:44.588Z