English

Causal holographic information does not satisfy the linearized quantum focusing condition

High Energy Physics - Theory 2018-04-18 v2 General Relativity and Quantum Cosmology

Abstract

The Hubeny-Rangamani causal holographic information (CHI) defined by a region RR of a holographic quantum field theory (QFT) is a modern version of the idea that the area of event horizons might be related to an entropy. Here the event horizon lives in a dual gravitational bulk theory with Newton's constant GbulkG_{\rm bulk}, and the relation involves a factor of 4Gbulk4G_{\rm bulk}. The fact that CHI is bounded below by the von Neumann entropy SS suggests that CHI is coarse-grained. Its properties could thus differ markedly from those of SS. In particular, recent results imply that when d4d\le 4 holographic QFTs are perturbatively coupled to dd-dimensional gravity, the combined system satisfies the so-called quantum focusing condition (QFC) at leading order in the new gravitational coupling GdG_d when the QFT entropy is taken to be that of von Neumann. However, by studying states dual to spherical bulk (anti--de Sitter) Schwarschild black holes in the conformal frame for which the boundary is a (2+1)(2+1)-dimensional de Sitter space, we find the QFC defined by CHI is violated even when perturbing about a Killing horizon and using a single null congruence. Since it is known that a generalized second law (GSL) holds in this context, our work demonstrates that the QFC is not required in order for an entropy, or an entropy-like quantity, to satisfy such a GSL.

Keywords

Cite

@article{arxiv.1802.09730,
  title  = {Causal holographic information does not satisfy the linearized quantum focusing condition},
  author = {Zicao Fu and Donald Marolf and Marvin Qi},
  journal= {arXiv preprint arXiv:1802.09730},
  year   = {2018}
}

Comments

12 pages, 3 figures; v2: modifications to address referee comments

R2 v1 2026-06-23T00:34:40.815Z