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Geometry of Massless Scattering in Integrable Superstring

High Energy Physics - Theory 2022-10-12 v3 Mathematical Physics math.MP

Abstract

We consider the action of the qq-deformed Poincar\'e superalgebra on the massless non-relativistic R-matrix in ordinary (undeformed) integrable AdS2×S2×T6AdS_2 \times S^2 \times T^6 type IIB superstring theory. The boost generator acts non-trivially on the R-matrix, confirming the existence of a non-relativistic rapidity γ\gamma with respect to which the R-matrix must be of difference form. We conjecture that from a massless AdS/CFT integrable relativistic R-matrix one can obtain the parental massless non-relativistic R-matrix simply by replacing the relativistic rapidity with γ\gamma. We check our conjecture in ordinary (undeformed) AdSn×Sn×T102nAdS_n \times S^n \times T^{10 - 2n}, n=2,3n = 2, 3. In the case n=3n=3, we check that the matrix part and the dressing factor - up to numerical accuracy for real momenta - obey our prescription. In the n=2n=2 case, we check the matrix part and propose the non-relativistic dressing factor. We then start a programme of classifying R-matrices in terms of connections on fibre bundles. The conditions obtained for the connection are tested on a set of known integrable R-matrices.

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Cite

@article{arxiv.1903.10759,
  title  = {Geometry of Massless Scattering in Integrable Superstring},
  author = {Andrea Fontanella and Alessandro Torrielli},
  journal= {arXiv preprint arXiv:1903.10759},
  year   = {2022}
}

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