M-Theory and Two-Dimensional Effective Dynamics
arXiv:hep-th/9905029 · doi:10.1016/S0550-3213(99)00538-6
Abstract
We calculate from M-theory the two-dimensional low energy effective dynamics of various brane configurations. In the first part we study configurations that have a dual description in type IIA string theory as two-dimensional (4,0) Yang-Mills theories with gauge group SU(N_1)xSU(N_2) and chiral fermions in the bi-fundamental representation. In the second part we derive related equations of motion which describe the low energy internal dynamics of a supersymmetric black hole in four-dimensional N=1 supergravity, obtained as an M-fivebrane wrapped on a complex four-cycle.
Two references added. To appear in Nucl. Phys. B
References in corpus (14)
- Solutions Of Four-Dimensional Field Theories Via M Theory
- Black Hole Entropy in M-Theory
- Type IIB Superstrings, BPS Monopoles, And Three-Dimensional Gauge Dynamics
- Covariant Field Equations of the M Theory Five-Brane
- Branes and N=2 Theories in Two Dimensions
- Classical M-Fivebrane Dynamics and Quantum N=2 Yang-Mills
- Gauge Fields and M-Fivebrane Dynamics
- Fayet-Iliopoulos Potentials from Four-Folds
- Two Dimensional Mirror Symmetry From M-theory
- N=2 Superfields and the M-Fivebrane
- D-brane Bound States and the Generalised ADHM Construction
- On the twisted chiral potential in 2d and the analogue of rigid special geometry for 4-folds
- N=(4,4) 2D Supersymmetric Gauge Theory and Brane Configuration
- On the Brane Configuration of 2D supersymmetric gauge theory