An analytic approach to the stress energy tensor in quantum field theory
Abstract
We discuss a framework for quantum fields in curved spacetimes that possess a stress energy tensor as a connection one form on a suitable moduli space of metrics. In generic spacetimes the existence of such a tensor is thought to be a replacement for the existence of symmetries that the Minkowski theory relies on. It is shown that the local time-slice property and the implementability of local isometries are consequences of the existence of a stress energy tensor that is a local field. We prove that the Klein-Gordon field, in an irreducible Fock representation determined by a quasifree Hadamard state, is an example. In this example we show that the scattering matrix for compactly supported metric perturbations exists in the Fock space and is smooth on a dense set with respect to the perturbation parameter. This generalises results by Dimock and Wald. As a tool we also establish the precise microlocal properties of parameter dependent fundamental solutions.
Keywords
Cite
@article{arxiv.2508.00487,
title = {An analytic approach to the stress energy tensor in quantum field theory},
author = {Alexander Strohmaier},
journal= {arXiv preprint arXiv:2508.00487},
year = {2026}
}
Comments
49 pages, substantial revision and more details added