English

Validating a Two Qubit Non-Stoquastic Hamiltonian in Quantum Annealing

Quantum Physics 2020-01-10 v2

Abstract

We propose a two qubit experiment for validating tunable antiferromagnetic XXXX interactions in quantum annealing. Such interactions allow the time-dependent Hamiltonian to be non-stoquastic, and the instantaneous ground state can have negative amplitudes in the computational basis. Our construction relies on how the degeneracy of the Ising Hamiltonian's ground states is broken away from the end point of the anneal: above a certain value of the antiferromagnetic XXXX interaction strength, the perturbative ground state at the end of the anneal changes from a symmetric to an antisymmetric state. This change is associated with a suppression of one of the Ising ground states, which can then be detected using solely computational basis measurements. We show that a semiclassical approximation of the annealing protocol fails to reproduce this feature, making it a candidate `quantum signature' of the evolution.

Keywords

Cite

@article{arxiv.1909.06333,
  title  = {Validating a Two Qubit Non-Stoquastic Hamiltonian in Quantum Annealing},
  author = {Tameem Albash},
  journal= {arXiv preprint arXiv:1909.06333},
  year   = {2020}
}

Comments

v1: 6 pages, 6 figures. v2: updated to published version

R2 v1 2026-06-23T11:14:47.297Z