Planes, branes and automorphisms: I. Static branes
arXiv:hep-th/9805073 · doi:10.1088/1126-6708/1998/07/004
Abstract
This is the first of a series of papers devoted to the group-theoretical analysis of the conditions which must be satisfied for a configuration of intersecting M5-branes to be supersymmetric. In this paper we treat the case of static branes. We start by associating (a maximal torus of) a different subgroup of Spin(10) with each of the equivalence classes of supersymmetric configurations of two M5-branes at angles found by Ohta & Townsend. We then consider configurations of more than two intersecting branes. Such a configuration will be supersymmetric if and only if the branes are G-related, where G is a subgroup of Spin(10) contained in the isotropy of a spinor. For each such group we determine (a lower bound for) the fraction of the supersymmetry which is preserved. We give examples of configurations consisting of an arbitrary number of non-coincident intersecting fivebranes with fractions: 1/32, 1/16, 3/32, 1/8, 5/32, 3/16 and 1/4, and we determine the resulting (calibrated) geometry.
26 pages (Added a reference and modified one table slightly.)
References in corpus (7)
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- Branes and Calibrated Geometries
- Branes at Angles and Black Holes
- Classification of Different Branes at Angles
- Planes, branes and automorphisms: II. Branes in motion
- Branes at angles and calibrated geometry
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Cited by in corpus (14)
- Hidden Spacetime Symmetries and Generalized Holonomy in M-theory
- Holonomy and Symmetry in M-theory
- Intersecting brane solutions in string and M-theory
- From D-Dbar Pairs to Branes in Motion
- Grassmannians,Calibrations and Five-Brane Intersections
- Generalized holonomy of M-theory vacua
- Intersecting brane geometries
- PhreMology--calibrating M-branes
- BPS States and Automorphisms
- Erice lectures on "The status of local supersymmetry"
- A "Periodic Table" for Supersymmetric M-Theory Compactifications
- The D2 Susy Zoo
- Review of SU(2)-Calibrations
- Supersymmetric Yang-Mills theory on conformal supergravity backgrounds in ten dimensions