English

Complexity and entanglement in non-local computation and holography

Quantum Physics 2022-11-30 v6 High Energy Physics - Theory

Abstract

Does gravity constrain computation? We study this question using the AdS/CFT correspondence, where computation in the presence of gravity can be related to non-gravitational physics in the boundary theory. In AdS/CFT, computations which happen locally in the bulk are implemented in a particular non-local form in the boundary, which in general requires distributed entanglement. In more detail, we recall that for a large class of bulk subregions the area of a surface called the ridge is equal to the mutual information available in the boundary to perform the computation non-locally. We then argue the complexity of the local operation controls the amount of entanglement needed to implement it non-locally, and in particular complexity and entanglement cost are related by a polynomial. If this relationship holds, gravity constrains the complexity of operations within these regions to be polynomial in the area of the ridge.

Keywords

Cite

@article{arxiv.2204.00908,
  title  = {Complexity and entanglement in non-local computation and holography},
  author = {Alex May},
  journal= {arXiv preprint arXiv:2204.00908},
  year   = {2022}
}

Comments

v5 adds doi's to bibliography

R2 v1 2026-06-24T10:35:42.542Z