Algebraic Bethe Circuits

Author:

Sopena Alejandro1,Gordon Max Hunter12,García-Martín Diego31,Sierra Germán1,López Esperanza1

Affiliation:

1. Instituto de Física Teórica, UAM/CSIC, Universidad Autónoma de Madrid, Madrid, Spain

2. Theoretical Division, Los Alamos National Laboratory, Los Alamos, NM 87545, USA

3. Barcelona Supercomputing Center, Barcelona, Spain

Abstract

The Algebraic Bethe Ansatz (ABA) is a highly successful analytical method used to exactly solve several physical models in both statistical mechanics and condensed-matter physics. Here we bring the ABA into unitary form, for its direct implementation on a quantum computer. This is achieved by distilling the non-unitary R matrices that make up the ABA into unitaries using the QR decomposition. Our algorithm is deterministic and works for both real and complex roots of the Bethe equations. We illustrate our method on the spin-12 XX and XXZ models. We show that using this approach one can efficiently prepare eigenstates of the XX model on a quantum computer with quantum resources that match previous state-of-the-art approaches. We run small-scale error-mitigated implementations on the IBM quantum computers, including the preparation of the ground state for the XX and XXZ models on 4 sites. Finally, we derive a new form of the Yang-Baxter equation using unitary matrices, and also verify it on a quantum computer.

Funder

Government of Spain

"la Caixa" Foundation

Government of Spain and the European Union Regional Development Fund

Publisher

Verein zur Forderung des Open Access Publizierens in den Quantenwissenschaften

Subject

Physics and Astronomy (miscellaneous),Atomic and Molecular Physics, and Optics

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