Estimating the randomness of quantum circuit ensembles up to 50 qubits

ORAL

Abstract

Random quantum circuits have been utilized in the contexts of quantum supremacy demonstrations, variational quantum algorithms for chemistry and machine learning, and blackhole information. The ability of random circuits to approximate any random unitaries has consequences on their complexity, expressibility, and trainability. To study this property of random circuits, we develop numerical protocols for estimating the frame potential, the distance between a given ensemble and the exact randomness. Our tensor-network-based algorithm has polynomial complexity for shallow circuits and is high-performing using CPU and GPU parallelism. We study 1. local and parallel random circuits to verify the linear growth in complexity as stated by the Brown–Susskind conjecture, and; 2. hardware-efficient ansätze to shed light on its expressibility and the barren plateau problem in the context of variational algorithms. Our work shows that large-scale tensor network simulations could provide important hints toward open problems in quantum information science.

* This material is based upon work supported by the DOE National Quantum Information Science Research Centers. This work was completed in part with resources provided by the UChicago Research Computing Center. We thank Jens Eisert and Danylo Lykov for useful discussions. M.L. is supported by DoE Q-NEXT. J.L. is supported in part by IBM through the Chicago Quantum Exchange and by the Pritzker School of Molecular Engineering at UChicago through AFOSR MURI (FA9550-21-1-0209). Y.A. acknowledges support from the DOE SC, under contract DE-AC02-06CH11357 at ANL, and DARPA. L.J. acknowledges support from ARO (W911NF-18-1-0020, W911NF-18-1-0212), ARO MURI (W911NF-16-1-0349, W911NF-21-1-0325), AFOSR MURI (FA9550-19-1-0399, FA9550-21-1-0209), AFRL (FA8649-21-P-0781), DoE Q-NEXT, NSF (OMA-1936118, EEC-1941583, OMA-2137642), NTT Research, and the Packard Foundation (2020-71479).

Publication: Liu, M., Liu, J., Alexeev, Y. et al. Estimating the randomness of quantum circuit ensembles up to 50 qubits. npj Quantum Inf 8, 137 (2022).

Presenters

  • Minzhao Liu

    University of Chicago

Authors

  • Minzhao Liu

    University of Chicago

  • Junyu Liu

    University of Chicago

  • Yuri Alexeev

    Argonne National Laboratory

  • Liang Jiang

    University of Chicago