Beyond-classical experiments on a trapped-ion quantum processor

ORAL

Abstract

Recent advancements in quantum computing hardware have created a growing divide between the computational powers of classical and quantum systems. In this talk, I will highlight recent progress in beyond-classical experiments on the 56-qubit Quantinuum H2 trapped-ion quantum processor. The talk will cover the power of all-to-all quantum circuits to frustrate classical simulability and prospects for practical applications, among other topics.

*J.L., M.L., Y.A., and D.L. acknowledge support from the U.S. Department of Energy, Office of Science, under contract DE-AC02-06CH11357 at Argonne National Laboratory and the U.S. Department of Energy, Office of Science, National Quantum Information Science Research Centers. S.A. and S.H. acknowledge the support from the U.S. Department of Energy, Office of Science, National Quantum Information Science Research Centers, Quantum Systems Accelerator. T.H. was supported by the U.S. Department of Energy, Office of Science, Advanced Scientific Computing Research program office under the quantum computing user program. This research used supporting resources at the Argonne and the Oak Ridge Leadership Computing Facilities. The Argonne Leadership Computing Facility at Argonne National Laboratory is supported by the Office of Science of the U.S. DOE under Contract No. DE-AC02-06CH11357. The Oak Ridge Leadership Computing Facility at the Oak Ridge National Laboratory is supported by the Office of Science of the U.S. DOE under Contract No. DE-AC05-00OR22725. This research used resources of the National Energy Research Scientific Computing Center (NERSC), a Department of Energy Office of Science User Facility using NERSC award DDR-ERCAP0030284.

Presenters

  • Ruslan Shaydulin

    • JPMorganChase

Authors

  • Ruslan Shaydulin

    • JPMorganChase
  • Minzhao Liu

    • JPMorganChase
  • Pradeep Niroula

    • JPMorganChase
  • Matthew DeCross

    • Quantinuum
  • Shih-Han Hung

    • National Taiwan University
  • Scott Aaronson

    • University of Texas at Austin
  • Yuri Alexeev

    • NVIDIA Corporation
    • NVIDIA
  • K. Jordan Berg

    • Quantinuum
  • Florian J Curchod

    • Quantinuum
  • Joan M Dreiling

    • Quantinuum
  • Neal Erickson

    • Quantinuum
  • Cameron Foltz

    • Quantinuum
  • Michael Mills

    • Quantinuum
  • Michael Foss-Feig

    • Quantinuum
  • Steven A Moses

    • Quantinuum
  • David Hayes

    • Quantinuum
  • Brian Neyenhuis

    • Quantinuum
  • Travis S Humble

    • Oak Ridge National Laboratory
  • Peter Siegfried

    • Quantinuum
  • James Walker

    • Quantinuum
  • Danylo Lykov

    • JPMorganChase
  • Jeffrey Larson

    • Argonne National Laboratory
  • Charles Lim

    • JPMorganChase
  • Marco Pistoia

    • JPMorganChase
    • JP Morgan Chase