Thermodynamics of a Spherically Symmetric Causal Diamond in Minkowski Spacetime
Abstract
We compute a gravitational on-shell action of a finite, spherically symmetric causal diamond in -dimensional Minkowski spacetime, finding it is proportional to the area of the bifurcate horizon . We then identify the on-shell action with the saddle point of the Euclidean gravitational path integral, which is naturally interpreted as a partition function. This partition function is thermal with respect to a modular Hamiltonian . Consequently, we determine, from the on-shell action using standard thermodynamic identities, both the mean and variance of the modular Hamiltonian, finding . Finally, we show that modular fluctuations give rise to fluctuations in the geometry, and compute the associated phase shift of massless particles traversing the diamond under such fluctuations.
Keywords
Cite
@article{arxiv.2507.22977,
title = {Thermodynamics of a Spherically Symmetric Causal Diamond in Minkowski Spacetime},
author = {Kwinten Fransen and Temple He and Kathryn M. Zurek},
journal= {arXiv preprint arXiv:2507.22977},
year = {2025}
}
Comments
52 pages, 2 figures; v2: minor clarifications, version to appear in JHEP