arXiv · 2507.16890
Thermal modifications of mesons and energy-energy correlators from real-time simulations of a $U(1)$ lattice gauge theory
Abstract
We investigate thermal properties of a $U(1)$ lattice gauge theory in $1+1$-dimensions through real-time simulations. We extract the spectral functions directly coupling to the pseudoscalar and scalar mesons, demonstrating the thermal modifications of these states with increasing temperatures. Introducing the notion of energy-flow operators, we quantify the temporal build-up of correlations in the energy flows across the lattice. We demonstrate that energy-energy correlators fail to factorize to products of energy flows, both in the vacuum and at nonzero-temperature, indicating the presence of non-trivial correlations in the quantum states. Our results constitute a first real-time \textit{ab-initio} study of bound state thermal broadening and finite temperature energy-flow correlations in a gauge theory, providing a benchmark for future studies of hadronic matter under extreme conditions.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
João Barata, David Frenklakh, Swagato Mukherjee. 2025-07-22. Thermal modifications of mesons and energy-energy correlators from real-time simulations of a $U(1)$ lattice gauge theory. https://doi.org/10.1103/x3sn-vq11
Cite the original work for its findings. Save a collection to share your selection of sources.