English

Quantum computational advantage with string order parameters of 1D symmetry-protected topological order

Quantum Physics 2021-08-02 v2

Abstract

Nonlocal games with advantageous quantum strategies give arguably the most fundamental demonstration of the power of quantum resources over their classical counterparts. Recently, certain multiplayer generalizations of nonlocal games have been used to prove unconditional separations between small computational complexity classes of shallow-depth circuits. Here, we show advantageous strategies for these nonlocal games for generic ground states of one-dimensional symmetry-protected topological orders (SPTOs), when a discrete invariant of a SPTO known as a twist phase is nontrivial and -1. Our construction demonstrates that sufficiently large string order parameters of such SPTOs are indicative of globally constrained correlations useful for the unconditional computational separation.

Keywords

Cite

@article{arxiv.2007.16160,
  title  = {Quantum computational advantage with string order parameters of 1D symmetry-protected topological order},
  author = {Austin K. Daniel and Akimasa Miyake},
  journal= {arXiv preprint arXiv:2007.16160},
  year   = {2021}
}

Comments

Accepted to PRL; 5 pages + 13 pages supplemental material, 1 + 1 figures