English

Complexity of Formation in Holography

High Energy Physics - Theory 2017-06-15 v2 General Relativity and Quantum Cosmology Quantum Physics

Abstract

It was recently conjectured that the quantum complexity of a holographic boundary state can be computed by evaluating the gravitational action on a bulk region known as the Wheeler-DeWitt patch. We apply this complexity=action duality to evaluate the `complexity of formation' (arXiv:1509.07876, arXiv:1512.04993), i.e., the additional complexity arising in preparing the entangled thermofield double state with two copies of the boundary CFT compared to preparing the individual vacuum states of the two copies. We find that for boundary dimensions d>2d>2, the difference in the complexities grows linearly with the thermal entropy at high temperatures. For the special case d=2d=2, the complexity of formation is a fixed constant, independent of the temperature. We compare these results to those found using the complexity=volume duality.

Keywords

Cite

@article{arxiv.1610.08063,
  title  = {Complexity of Formation in Holography},
  author = {Shira Chapman and Hugo Marrochio and Robert C. Myers},
  journal= {arXiv preprint arXiv:1610.08063},
  year   = {2017}
}

Comments

37+32 pages, 24 figures; v2 - added appendix (Insights from MERA), added references, corrected typos

R2 v1 2026-06-22T16:31:42.567Z