Four-dimensional SYM probes in wrapped M5-brane backgrounds
JHEP 0606:059,2006 We study the worldvolume supersymmetric gauge theory of M-branes probing backgrounds corresponding to wrapped M5-branes. In the case of M5-branes wrapping a 2-cycle in two-dimensional complex space, we use M2-brane probes to compute the BPS spectra of the corresponding N=2 gauge t...
Saved in:
Main Authors | , |
---|---|
Format | Journal Article |
Language | English |
Published |
20.09.2005
|
Subjects | |
Online Access | Get full text |
Cover
Loading…
Summary: | JHEP 0606:059,2006 We study the worldvolume supersymmetric gauge theory of M-branes probing
backgrounds corresponding to wrapped M5-branes. In the case of M5-branes
wrapping a 2-cycle in two-dimensional complex space, we use M2-brane probes to
compute the BPS spectra of the corresponding N=2 gauge theory as well as
M5-brane probes to calculate field theory parameters such as the gauge
coupling, theta angle and complex scalar moduli space metric. This background
describes a large class of Hanany-Witten type models when dimensionally reduced
to Type IIA 10d string theory. We calculate the instanton action using a
D0-brane probe in this limit. For the case of M5-branes wrapping a 2-cycle in
three-dimensional complex space, we firstly show an alternative method to
derive this solution involving the projection conditions and certain spinor
bilinear differential equations. We also consider M5-brane probes of this
background, and analyse the corresponding N=1 MQCD gauge theory parameters. In
general there were no supergravity corrections to field theory parameters when
compared to previous flat-space field theory analysis. |
---|---|
Bibliography: | DCPT-05/43 |
DOI: | 10.48550/arxiv.hep-th/0509154 |