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arxiv: 1303.1037 · v5 · submitted 2013-03-05 · ✦ hep-th

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On string theory on AdS₃ x S³ x T⁴ with mixed 3-form flux: tree-level S-matrix

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classification ✦ hep-th
keywords theorymodels-matrixfluxformnsnsamplitudescorresponding
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We consider superstring theory on AdS_3 x S^3 x T^4 supported by a combination of RR and NSNS 3-form fluxes (with parameter of the NSNS 3-form q). This theory interpolates between the pure RR flux model (q=0) whose spectrum is expected to be described by a Bethe ansatz and the pure NSNS flux model (q=1) which is described by the supersymmetric extension of the SL(2,R) x SU(2) WZW model. As a first step towards the solution of this integrable theory for generic value of q we compute the corresponding tree-level S-matrix for massive BMN-type excitations. We find that this S-matrix has a surprisingly simple dependence on q: the diagonal amplitudes have exactly the same structure as in the q=0 case but with the BMN dispersion relation e^2 = p^2 + 1 replaced by the one with shifted momentum and mass, e^2 = (p + q)^2 + 1 - q^2. The off-diagonal amplitudes are then determined from the classical Yang-Baxter equation. We also construct the Pohlmeyer reduced model corresponding to this superstring theory and find that it depends on q only through its mass-squared parameter proportional to (1-q^2), implying that its relativistic S-matrix is q-independent.

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  1. Wilson loop in AdS$_3 \times S^3 \times T^4$ from quantum M2 brane

    hep-th 2026-03 unverdicted novelty 6.0

    The 1-loop M2-brane partition function for the Wilson loop in AdS3 x S3 x T4 equals kappa over sqrt(2 pi) with no higher-genus string corrections.