Digital quantum simulation of lattice fermion theories with local encoding
Quantum Physics
2024-09-06 v3 Strongly Correlated Electrons
Abstract
We numerically analyze the feasibility of a platform-neutral, general strategy to perform quantum simulations of fermionic lattice field theories under open boundary conditions. The digital quantum simulator requires solely one- and two-qubit gates and is scalable since integrating each Hamiltonian term requires a finite (non-scaling) cost. The exact local fermion encoding we adopt relies on auxiliary lattice gauge fields by adding a pure gauge Hamiltonian term akin to the Toric Code. By numerically emulating the quantum simulator real-time dynamics, we observe a timescale separation for spin- and charge-excitations in a spin- Hubbard ladder in the model limit.
Keywords
Cite
@article{arxiv.2310.15091,
title = {Digital quantum simulation of lattice fermion theories with local encoding},
author = {Marco Ballarin and Giovanni Cataldi and Giuseppe Magnifico and Daniel Jaschke and Marco Di Liberto and Ilaria Siloi and Simone Montangero and Pietro Silvi},
journal= {arXiv preprint arXiv:2310.15091},
year = {2024}
}
Comments
24 pages, 9 figures