Hamiltonian simulation in Zeno subspaces

ORAL

Abstract

We investigate the quantum Zeno effect as a framework for designing and analyzing quantum algorithms for Hamiltonian simulation. We show that frequent projective measurements of an ancilla qubit register can be used to simulate quantum dynamics on a target qubit register with a circuit complexity similar to randomized approaches. The classical sampling overhead in the latter approaches is traded for ancilla qubit overhead in Zeno-based approaches. A second-order Zeno sequence is developed to improve scaling and implementations through unitary kicks are discussed. We show that the circuits over the combined register can be identified as a subroutine commonly used in postTrotter Hamiltonian simulation methods. We build on this observation to reveal connections between different Hamiltonian simulation algorithms.

*Sandia National Labs is managed and operated by NTESS under DOE NNSA contract DENA0003525. SAND2024-14648A

Presenters

  • Kasra Rajabzadeh Dizaji

    • Arizona State University

Authors

  • Kasra Rajabzadeh Dizaji

    • Arizona State University
  • Ariq Haqq

    • University of New Mexico
  • Christian Arenz

    • Arizona State University
  • Alicia B Magann

    • Sandia National Laboratories