English

Non-perturbative Floquet engineering of the toric-code Hamiltonian and its ground state

Quantum Physics 2025-11-04 v2 Quantum Gases

Abstract

We theoretically propose a quantum simulation scheme for the toric-code Hamiltonian, the paradigmatic model of a quantum spin liquid, based on time-periodic driving. We develop a hybrid continuous-digital strategy that exploits the commutativity of different terms in the target Hamiltonian. It allows one to realize the required four-body interactions in a nonperturbative way, attaining strong coupling and the suppression of undesired processes. In addition, we design an optimal protocol for preparing the topologically ordered ground states with high fidelity. A proof-of-principle implementation of a topological device and its use to simulate the topological phase transition are also discussed. The proposed scheme finds natural implementation in architectures of superconducting qubits with tuneable couplings.

Keywords

Cite

@article{arxiv.2211.09724,
  title  = {Non-perturbative Floquet engineering of the toric-code Hamiltonian and its ground state},
  author = {Francesco Petiziol and Sandro Wimberger and André Eckardt and Florian Mintert},
  journal= {arXiv preprint arXiv:2211.09724},
  year   = {2025}
}

Comments

21 pages, 9 figures