English

Constrained superfields from an anti-D3-brane in KKLT

High Energy Physics - Theory 2016-08-29 v2

Abstract

The KKLT construction of dS vacua relies on an uplift term that arises from an anti-D3-brane. It was argued by Kachru, Pearson and Verlinde that this anti-D3-brane is an excited state in a supersymmetric theory since it can decay to a supersymmetric ground state. Hence the anti-D3-brane breaks supersymmetry spontaneously and one should be able to package all the world-volume fields on the anti-D3-brane into a four dimensional N=1\cal{N}=1 supersymmetric action. Here we extend previous results and identify the constrained superfields that correspond to all the degrees of freedom on the anti-D3-brane. In particular, we show explicitly that the four 4D worldvolume spinors give rise to constrained chiral multiplets SS and YiY^i, i=1,2,3i=1,2,3 that satisfy S2=SYi=0S^2=SY^i=0. We also conjecture (and provide evidence in a forthcoming publication) that the vector field AμA_\mu and the three scalars ϕi\phi^i give rise to a field strength multiplet WαW_\alpha and three chiral multiplets HiH^i that satisfy the constraints SWα=Dˉα˙(SHˉi)=0S W_\alpha= \bar{D}_{\dot \alpha} (S \bar H^i)=0. This is the first time that such constrained multiplets appear in string theory constructions.

Keywords

Cite

@article{arxiv.1605.03961,
  title  = {Constrained superfields from an anti-D3-brane in KKLT},
  author = {Bert Vercnocke and Timm Wrase},
  journal= {arXiv preprint arXiv:1605.03961},
  year   = {2016}
}

Comments

20 pages, v2: references added

R2 v1 2026-06-22T13:59:42.366Z