A time operator and the time-of-arrival problem in quantum field theory
Abstract
The Newton-Wigner states and operator are widely accepted to provide an adequate notion of spatial localization of a particle in quantum field theory on a spacelike hypersurface. Replacing the spacelike with a timelike hypersurface, we construct one-particle states of massive Klein-Gordon theory that are localized on the hypersurface in the temporal as well as two spatial directions. This addresses the longstanding problem of a "time operator" in quantum theory. It is made possible by recent advances in quantization on timelike hypersurfaces and the introduction of evanescent particles. As a first application of time-localized states, we consider the time-of-arrival problem. Our results are in accordance with semiclassical expectations of causal propagation of massless and massive particles. As in the Newton-Wigner case, localization is not perfect, but apparent superluminal propagation is exponentially suppressed.
Keywords
Cite
@article{arxiv.2407.08841,
title = {A time operator and the time-of-arrival problem in quantum field theory},
author = {Daniele Colosi and Robert Oeckl},
journal= {arXiv preprint arXiv:2407.08841},
year = {2025}
}
Comments
27 pages, 8 figures; v2: minor modifications