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Quantum Computation of Eigenvalues within Target Intervals

ORAL

Abstract

There is widespread interest in calculating the energy spectrum of a Hamiltonian, for example to analyze optical spectra and energy deposition by ions in materials. In this study, we propose a quantum algorithm that samples the set of energies within a target energy-interval without requiring good approximations of the target energy-eigenstates. We discuss the implementation of direct and iterative amplification protocols and give resource and runtime estimates. We illustrate initial applications by amplifying excited states on molecular Hydrogen.

Presenters

  • Phillip Jensen

    Univ of Toronto

Authors

  • Phillip Jensen

    Univ of Toronto

  • Lasse B. Kristensen

    Physics and Astronomy, Aarhus University

  • Jakob S. Kottmann

    Chemistry/Computer Science, University of Toronto, Univ of Toronto

  • Alan Aspuru-Guzik

    Univ of Toronto, Chemistry/Computer Science, University of Toronto, Department of Computer Science and Chemistry, University of Toronto