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

Loading...
Thumbnail Image

Institution Authors

Item type:Person,
Özer, Aybike
Prof. Dr.

Advisor

Department

Journal Title

Journal ISSN

Volume Title

Publisher

Springer Science and Business Media LLC

Research Projects

Organizational Units

Journal Issue

Abstract

Abstract In a supersymmetric compactification of Type II supergravity, preservation of $$ \mathcal{N} $$<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"> <mml:mi>N</mml:mi> </mml:math> = 1 supersymmetry in four dimensions requires that the structure group of the generalized tangent bundle TM ⨁ T∗M of the six dimensional internal manifold M is reduced from SO(6) to SU(3) × SU(3). This topological condition on the internal manifold implies existence of two globally defined compatible pure spinors Φ1 and Φ2 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.

Description

Journal or Series

Journal of High Energy Physics

ISSN

ISBN

Rights

OPEN

Keywords

High Energy Physics - Theory, Mathematics - Differential Geometry, Superstring Vacua, FOS: Physical sciences, String and superstring theories in gravitational theory, QC770-798, String and superstring theories, other extended objects (e.g., branes) in quantum field theory, Supergravity, Two-dimensional field theories, conformal field theories, etc. in quantum mechanics, High Energy Physics - Theory (hep-th), Differential Geometry (math.DG), string duality, Flux compactifications, Nuclear and particle physics. Atomic energy. Radioactivity, Supersymmetric field theories in quantum mechanics, FOS: Mathematics, superstring vacua, String Duality, flux compactifications

Citation

Collections

Endorsement

Review

Supplemented By

Referenced By

Related Patent

Related Goal

1
Görüntülenme
0
İndirme
Altmetric
Dimensions
PlumX Metrikleri
BIP! Indicators
Google Scholar
Scholar'da Ara ↗