A four-dimensional toric code with non-Clifford transversal gates
Abstract
The design of a four-dimensional toric code is explored with the goal of finding a lattice capable of implementing a logical gate transversally. The established lattice is the octaplex tessellation, which is a regular tessellation of four-dimensional Euclidean space whose underlying 4-cell is the octaplex, or hyper-diamond. This differs from the conventional 4D toric code lattice, based on the hypercubic tessellation, which is symmetric with respect to logical and and only allows for the implementation of a transversal Clifford gate. This work further develops the established connection between topological dimension and transversal gates in the Clifford hierarchy, generalizing the known designs for the implementation of transversal and in two and three dimensions, respectively.
Cite
@article{arxiv.2010.02238,
title = {A four-dimensional toric code with non-Clifford transversal gates},
author = {Tomas Jochym-O'Connor and Theodore J. Yoder},
journal= {arXiv preprint arXiv:2010.02238},
year = {2021}
}
Comments
14+5 pages, 11 figures