Papers
Topics
Authors
Recent
Search
2000 character limit reached

The Small E8E_8 Instanton and the Kraft Procesi Transition

Published 3 Jan 2018 in hep-th | (1801.01129v3)

Abstract: One of the simplest (1,0)(1,0) supersymmetric theories in six dimensions lives on the world volume of one M5 brane at a DD type singularity C<sup>2/Dk\mathbb{C}<sup>2/D_k. The low energy theory is given by an SQCD theory with Sp(k−4)Sp(k-4) gauge group, a precise number of $2k$ flavors which is anomaly free, and a scale which is set by the inverse gauge coupling. The Higgs branch at finite coupling H<em>f\mathcal{H}<em>f is a closure of a nilpotent orbit of D</em>2kD</em>{2k} and develops many more flat directions as the inverse gauge coupling is set to zero (violating a standard lore that wrongly claims the Higgs branch remains classical). The quaternionic dimension grows by $29$ for any kk and the Higgs branch stops being a closure of a nilpotent orbit for $k&gt;4$, with an exception of k=4k=4 where it becomes min<em>E8‾\overline{{\rm min}<em>{E_8}}, the closure of the minimal nilpotent orbit of E8E_8, thus having a rare phenomenon of flavor symmetry enhancement in six dimensions. Geometrically, the natural inclusion of Hf⊂H</em>∞\mathcal{H}_f \subset \mathcal{H}</em>{\infty} fits into the Brieskorn Slodowy theory of transverse slices, and the transverse slice is computed to be minE8‾\overline{{\rm min}_{E_8}} for any $k&gt;3$. This is identified with the well known small E8E_8 instanton transition where 1 tensor multiplet is traded with 29 hypermultiplets, thus giving a physical interpretation to the geometric theory. By the analogy with the classical case, we call this the Kraft Procesi transition.

Citations (50)

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Open Problems

We haven't generated a list of open problems mentioned in this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.