Sigma-model Solutions and Intersecting p-Branes Related to Lie Algebras
arXiv:hep-th/9805113 · doi:10.1016/S0370-2693(98)01215-5
Abstract
A family of Majumdar-Papapetrou type solutions in sigma-model of p-brane origin is obtained for all direct sums of finite-dimensional simple Lie algebras. Several examples of p-brane dyonic configurations in D=10 (IIA) and D=11 supergravities corresponding to the Lie algebra sl(3,C) are considered.
13 pages, LaTeX, submitted to Phys. Lett. B
References in corpus (14)
- Branes And The Dynamics Of QCD
- Branes and N=1 Duality in String Theory
- Confinement and Strings in MQCD
- Intersection Rules for p-Branes
- Lectures on Supergravity p-branes
- Multidimensional Classical and Quantum Cosmology with Intersecting p-branes
- Type IIA Superstrings, Chiral Symmetry, and N=1 4D Gauge Theory Dualities
- Comments on the M Theory Approach to N=1 SQCD and Brane Dynamics
- Sigma-model for Generalized Composite p-branes
- Brane Configurations and 4D Field Theory Dualities
- Intersecting p-brane Solutions in Multidimensional Gravity and M-theory
- Majumdar-Papapetrou Type Solutions in Sigma-model and Intersecting p-branes
- Multidimensional sigma-models with composite electric p-branes
- Hyperbolic Kac-Moody Algebra from Intersecting p-branes
Cited by in corpus (11)
- Exact solutions in multidimensional gravity with antisymmetric forms
- Solutions with intersecting p-branes related to Toda chains
- Toda p-brane black holes and polynomials related to Lie algebras
- On billiard approach in multidimensional cosmological models
- Black hole p-brane solutions for general intersection rules
- P-brane black holes for general intersections
- Dyonic branes and linear dilaton background
- On exact solutions in multidimensional gravity with antisymmetric forms
- On Brane Solutions Related to Non-Singular Kac-Moody Algebras
- Black brane solutions related to non-singular Kac-Moody algebras
- Integrable spherically symmetric p-brane models associated with Lie algebras