4.4 Article

Pin(d, d) covariance of pure spinor equations for supersymmetric vacua and non-Abelian T-duality

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 12, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP12(2021)071

关键词

String Duality; Superstring Vacua; Flux compactifications

资金

  1. Turkish Council of Research and Technology (TUBITAK) through the ARDEB 1001 project [121F123]

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This paper discusses the conditions required to preserve N = 1 supersymmetry in a supersymmetric compactification of Type II supergravity, as well as the solution generating transformation for pure spinor equations. The study shows that non-Abelian T-duality (NATD) is a solution generating transformation for these pure spinor equations.
In a supersymmetric compactification of Type II supergravity, preservation of N = 1 supersymmetry in four dimensions requires that the structure group of the generalized tangent bundle TM circle plus T* M of the six dimensional internal manifold M is reduced from SO(6, 6) to SU(3)xSU(3). This topological condition on the internal manifold implies existence of two globally defined compatible pure spinors Phi(1) and Phi(2) of non-vanishing norm. Furthermore, these pure spinors should satisfy certain first order differential equations. In this paper, we show that non-Abelian T-duality (NATD) is a solution generating transformation for these pure spinor equations. We first show that the pure spinor equations are covariant under Pin( d, d) transformations. Then, we use the fact NATD is generated by a coordinate dependent Pin( d, d) transformation. The key point is that the flux produced by this transformation is the same as the geometric flux associated with the isometry group, with respect to which one implements NATD. We demonstrate our method by studying NATD of certain solutions of Type IIB supergravity with SU(2) isometry and SU(3) structure.

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