arXiv · 1504.08123
Classifying BPS States in Supersymmetric Gauge Theories Coupled to Higher Derivative Chiral Models
Abstract
We study N=1 supersymmetric gauge theories coupled with higher derivative chiral models in four dimensions in the off-shell superfield formalism. We solve the equation of motion for the auxiliary fields and find two distinct on-shell structures of the Lagrangian that we call the canonical and non-canonical branches characterized by zero and non-zero auxiliary fields, respectively. We classify BPS states of the models in Minkowski and Euclidean spaces. In Minkowski space, we find Abelian and non-Abelian vortices, vortex-lumps (or gauged lumps with fractional lump charges) as 1/2 BPS states in the canonical branch and higher derivative generalization of vortices and vortex-(BPS)baby Skyrmions (or gauged BPS baby Skyrmions with fractional baby Skyrme charges) as 1/4 BPS states in the non-canonical branch. In four-dimensional Euclidean space, we find Yang-Mills instantons trapped inside a non-Abelian vortex, intersecting vortices, intersecting vortex-(BPS)baby Skyrmions as 1/4 BPS states in the canonical branch but no BPS states in the non-canonical branch other than those in the Minkowski space.
Explore related subjects
Keep this discovery
Muneto Nitta, Shin Sasaki. 2015-04-30. Classifying BPS States in Supersymmetric Gauge Theories Coupled to Higher Derivative Chiral Models. https://doi.org/10.1103/physrevd.91.125025
Cite the original work for its findings. Save a collection to share your selection of sources.