Primitive Quantum Gates for Dihedral Gauge Theories
Quantum Physics
2022-07-04 v2 High Energy Physics - Lattice
High Energy Physics - Phenomenology
Abstract
We describe the simulation of dihedral gauge theories on digital quantum computers. The nonabelian discrete gauge group -- the dihedral group -- serves as an approximation to lattice gauge theory. In order to carry out such a lattice simulation, we detail the construction of efficient quantum circuits to realize basic primitives including the nonabelian Fourier transform over , the trace operation, and the group multiplication and inversion operations. For each case the required quantum resources scale linearly or as low-degree polynomials in . We experimentally benchmark our gates on the Rigetti Aspen-9 quantum processor for the case of . The fidelity of all gates was found to exceed .
Keywords
Cite
@article{arxiv.2108.13305,
title = {Primitive Quantum Gates for Dihedral Gauge Theories},
author = {M. Sohaib Alam and Stuart Hadfield and Henry Lamm and Andy C. Y. Li},
journal= {arXiv preprint arXiv:2108.13305},
year = {2022}
}
Comments
Published version