Solution planting scheme for fully-connected spin glasses

ORAL

Abstract

The advent of new specialized hardware designed to tackle spin-glass-like problems on dense graphs has resulted in a renewed interest in planted solutions for spin-glass Hamiltonians. Here we present a method for planting solutions in fully-connected spin-glass systems with tunable hardness. In particular, the hardness of the problems undergoes a complexity transition. Using both analytical and numerical techniques, we characterize the behavior of these new planted systems.

Presenters

  • Christopher Pattison

    • Texas A&M University

Authors

  • Christopher Pattison

    • Texas A&M University
  • Firas Hamze

    • D-Wave Systems Inc.
  • Jack Raymond

    • D-Wave Systems
    • D-Wave Systems Inc.
  • Helmut Katzgraber

    • Physics, Texas A&M University
    • Microsoft Quantum, Microsoft
    • Microsoft Quantum
    • Texas A&M University