arXiv · 1601.07757
Exact Duality of The Dissipative Hofstadter Model on a Triangular Lattice
Abstract
We study the dissipative Hofstadter model on a triangular lattice, making use of the $O(2,2;R)$ T-dual transformation of string theory. The $O(2,2;R)$ dual transformation transcribes the model in a commutative basis into the model in a non-commutative basis. In the zero temperature limit, the model exhibits an exact duality, which identifies equivalent points on the two dimensional parameter space of the model. The exact duality also defines magic circles on the parameter space, where the model can be mapped onto the boundary sine-Gordon on a triangular lattice. The model describes the junction of three quantum wires in a uniform magnetic field background. An explicit expression of the equivalence condition, which identifies the points on the two dimensional parameter space of the model by the exact duality, is obtained. It may help us to understand the structure of the phase diagram of the model.
Explore related subjects
Keep this discovery
Taejin Lee. 2016-01-31. Exact Duality of The Dissipative Hofstadter Model on a Triangular Lattice. https://arxiv.org/abs/1601.07757
Cite the original work for its findings. Save a collection to share your selection of sources.