arXiv · 1604.06184
Gauge interactions and topological phases of matter
Abstract
We initiate the study of the effects of strongly-coupled gauge interactions on the properties of the topological phases of matter. In particular, we discuss fermionic systems with three spatial dimensions, protected by time reversal symmetry. We first derive a sufficient condition for the introduction of a dynamical Yang-Mills field to preserve the topological phase of matter, and then show how the massless pions capture in the infrared the topological properties of the fermions in the ultraviolet. Finally, we use the S-duality of ${\mathcal N}=2$ supersymmetric $SU(2)$ gauge theory with $N_f{=}4$ flavors to show that the $\nu{=}16$ phase of Majorana fermions can be continuously connected to the trivial $\nu{=}0$ phase.
Explore related subjects
Keep this discovery
Yuji Tachikawa, Kazuya Yonekura. 2016-04-21. Gauge interactions and topological phases of matter. https://arxiv.org/abs/1604.06184
Cite the original work for its findings. Save a collection to share your selection of sources.