English

Universal Structure of Covariant Holographic Two-Point Functions In Massless Higher-Order Gravities

High Energy Physics - Theory 2018-11-20 v3 General Relativity and Quantum Cosmology

Abstract

We consider massless higher-order gravities in general D=d+1D=d+1 dimensions, which are Einstein gravity extended with higher-order curvature invariants in such a way that the linearized spectrum around the AdS vacua involves only the massless graviton. We derive the covariant holographic two-point functions and find that they have a universal structure. In particular, the theory-dependent overall coefficient factor CT\mathcal{C}_T can be universally expressed by (d1)CT=(a/)(d-1) \mathcal{C}_T=\ell (\partial a/\partial\ell), where aa is the holographic aa-charge and \ell is the AdS radius. We verify this relation in quasi-topological Ricci polynomial, Einstein-Gauss-Bonnet, Einstein-Lovelock and Einstein cubic gravities. In d=4d=4, we also find an intriguing relation between the holographic cc and aa charges, namely c=13(a/)c=\frac{1}{3}\ell (\partial a/\partial \ell), which also implies CT=c\mathcal{C}_T=c.

Keywords

Cite

@article{arxiv.1808.00494,
  title  = {Universal Structure of Covariant Holographic Two-Point Functions In Massless Higher-Order Gravities},
  author = {Yue-Zhou Li and H. Lu and Zhan-Feng Mai},
  journal= {arXiv preprint arXiv:1808.00494},
  year   = {2018}
}

Comments

latex, 31 pages, typos corrected