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Gravity from thermodynamics: optimal transport and negative effective dimensions

Authors :
De Luca, G. Bruno
De Ponti, Nicolò
Mondino, Andrea
Tomasiello, Alessandro
Source :
SciPost Phys. 15, 039 (2023)
Publication Year :
2022

Abstract

We prove an equivalence between the classical equations of motion governing vacuum gravity compactifications (and more general warped-product spacetimes) and a concavity property of entropy under time evolution. This is obtained by linking the theory of optimal transport to the Raychaudhuri equation in the internal space, where the warp factor introduces effective notions of curvature and (negative) internal dimension. When the Reduced Energy Condition is satisfied, concavity can be characterized in terms of the cosmological constant $\Lambda$; as a consequence, the masses of the spin-two Kaluza-Klein fields obey bounds in terms of $\Lambda$ alone. We show that some Cheeger bounds on the KK spectrum hold even without assuming synthetic Ricci lower bounds, in the large class of infinitesimally Hilbertian metric measure spaces, which includes D-brane and O-plane singularities. As an application, we show how some approximate string theory solutions in the literature achieve scale separation, and we construct a new explicit parametrically scale-separated AdS solution of M-theory supported by Casimir energy.<br />Comment: 57 pages + 4 appendices, 4 figures. v2: expanded introduction and comments on the Casimir vacuum. v3: clarification on the agreement of the Casimir vacuum with conjectured bounds

Details

Database :
arXiv
Journal :
SciPost Phys. 15, 039 (2023)
Publication Type :
Report
Accession number :
edsarx.2212.02511
Document Type :
Working Paper
Full Text :
https://doi.org/10.21468/SciPostPhys.15.2.039