Quantum Algorithm for Simulating Hamiltonian Dynamics with an Off-diagonal Series Expansion

Author:

Kalev Amir1,Hen Itay23

Affiliation:

1. Information Sciences Institute, University of Southern California, Arlington, VA 22203, USA

2. Information Sciences Institute, University of Southern California, Marina del Rey, CA 90292, USA

3. Department of Physics and Astronomy, and Center for Quantum Information Science & Technology, University of Southern California, Los Angeles, California 90089, USA

Abstract

We propose an efficient quantum algorithm for simulating the dynamics of general Hamiltonian systems. Our technique is based on a power series expansion of the time-evolution operator in its off-diagonal terms. The expansion decouples the dynamics due to the diagonal component of the Hamiltonian from the dynamics generated by its off-diagonal part, which we encode using the linear combination of unitaries technique. Our method has an optimal dependence on the desired precision and, as we illustrate, generally requires considerably fewer resources than the current state-of-the-art. We provide an analysis of resource costs for several sample models.

Funder

US Department of Energy

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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