arXiv · 2608.17688
Universal quantum theory from dynamical consistency
Abstract
We argue for the universality of quantum theory using a dynamical consistency argument, within a specific Hamiltonian setting. We analyse two different types of coupling between simple quantum harmonic oscillators. Each illustrates an aspect of the free and interacting quantum fields and shows the inadequacy of semiclassical models. In particular, we establish that requiring the canonical algebra to be preserved under joint unitary dynamics rules out specific hybrid classical-quantum models. We apply our reasoning to the gravitational field in the linear regime, coupled to the quantised electromagnetic field and, separately, to quantised matter. We conclude with a comparison to DeWitt's analysis of quantum measurement, in which the apparatus, if classical, must be at least stochastic to preserve the Heisenberg Uncertainty Principle. We also note that stochastic models are inconsistent with the strict version of conservation principles, even if they comply with a probabilistic (on average) conservation.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Chiara Marletto, Vlatko Vedral. 2026-08-18. Universal quantum theory from dynamical consistency. https://arxiv.org/abs/2608.17688
Cite the original work for its findings. Save a collection to share your selection of sources.