Feynman checkers: lattice quantum field theory with real time
Mathematical Physics
2025-04-23 v2 Classical Analysis and ODEs
Combinatorics
math.MP
Abstract
We present a new completely elementary model that describes the creation, annihilation, and motion of non-interacting electrons and positrons along a line. It is a modification of the model known under the names Feynman checkers or one-dimensional quantum walk. It can be viewed as a six-vertex model with certain complex weights of the vertices. The discrete model is consistent with the continuum quantum field theory, namely, reproduces the known expected charge density as the lattice step tends to zero. It is exactly solvable in terms of hypergeometric functions. We introduce interaction resembling Fermi's theory and establish perturbation expansion.
Keywords
Cite
@article{arxiv.2208.14247,
title = {Feynman checkers: lattice quantum field theory with real time},
author = {Mikhail Skopenkov and Alexey Ustinov},
journal= {arXiv preprint arXiv:2208.14247},
year = {2025}
}
Comments
43 pages, 7 figures; references to the six-vertex model added, minor changes in notation