Feynman path sum approach for simulation of linear optics
Quantum Physics
2025-10-31 v1
Abstract
The Feynman path integral formalism has inspired the development of memory-efficient and parallelizable classical algorithms for simulating quantum computers. We adapt this approach for the calculation of probability amplitudes of linear-optical boson sampling experiments, which involve Fock-state inputs, linear optical circuits, and photo-detection at the output. We describe this simulation method and compare it with alternative approaches. Additionally, we implement a Linear-Optical Feynman Path simulator in open-source C code, enhancing its performance using tensor contraction techniques. Our method is benchmarked for low-depth linear optical circuits, where it offers advantages in runtime and memory efficiency.
Cite
@article{arxiv.2510.26408,
title = {Feynman path sum approach for simulation of linear optics},
author = {Wagner F. Balthazar and Quinn M. B. Palmer and Alex. E. Jones and Jake F. F. Bulmer and Ernesto. F. Galvão},
journal= {arXiv preprint arXiv:2510.26408},
year = {2025}
}
Comments
12 pages, 13 figures