Algorithmic Algebraic Geometry and Flux Vacua
Journal of High Energy Physics (2006)
Algorithmic algebraic geometry and flux vacua
Journal of High Energy Physics 2006:9 (2006)
Abstract:
We develop a new and efficient method to systematically analyse four dimensional effective supergravities which descend from flux compactifications. The issue of finding vacua of such systems, both supersymmetric and non-supersymmetric, is mapped into a problem in computational algebraic geometry. Using recent developments in computer algebra, the problem can then be rapidly dealt with in a completely algorithmic fashion. Two main results are (1) a procedure for calculating constraints which the flux parameters must satisfy in these models if any given type of vacuum is to exist; (2) a stepwise process for finding all of the isolated vacua of such systems and their physical properties. We illustrate our discussion with several concrete examples, some of which have eluded conventional methods so far. 漏 SISSA 2006.Four-dimensional Effective M-theory on a Singular G_2 Manifold
(2006)
M theory on the orbifold C2/ZN
Physical Review D Particles Fields Gravitation and Cosmology 73:10 (2006)
Abstract:
We construct M theory on the orbifold C2/ZN by coupling 11-dimensional supergravity to a seven-dimensional Yang-Mills theory located on the orbifold fixed plane. It is shown that the resulting action is supersymmetric to leading nontrivial order in the 11-dimensional Newton constant. This action provides the starting point for a reduction of M theory on G2 spaces with codimension four singularities. 漏 2006 The American Physical Society.Cosmological solutions of low-energy heterotic M theory
Physical Review D - Particles, Fields, Gravitation and Cosmology 73:8 (2006)