Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5494358 | Nuclear Physics B | 2017 | 22 Pages |
Abstract
The N=2â supersymmetric gauge theory is a massive deformation of N=4, in which the adjoint hypermultiplet gets a mass. We present a D-brane realisation of the (non-)Abelian N=2â theory, and compute suitable topological amplitudes, which are expressed as a double series expansion. The coefficients determine couplings of higher-dimensional operators in the effective supergravity action that involve powers of the anti-self-dual N=2 chiral Weyl superfield and of self-dual gauge field strengths superpartners of the D5-brane coupling modulus. In the field theory limit, the result reproduces the Nekrasov partition function in the two-parameter Ω-background, in agreement with a recent proposal.
Related Topics
Physical Sciences and Engineering
Mathematics
Mathematical Physics
Authors
Carlo Angelantonj, Ignatios Antoniadis, Marine Samsonyan,