Minkowski's lost legacy and hadron electromagnetism
Abstract
We revisit Minkowski's lost legacy on relativistic electromagnetism in order to resolve long-standing puzzles over the charge distribution of relativistic systems like hadrons. Hadrons are unique relativistic electromagnetic systems characterized by their comparable size and Compton wavelength . As such, it was recently realized that the traditional Sachs definition of the charge distribution based on a non-relativistic formula is invalid. We explain that this is the same problem pursued by Lorentz, Einstein and others, on the electromagnetism of a moving body. We show how various charge distributions proposed in hadronic physics naturally emerge as the multipole moment densities in the macroscopic theory of relativistic electromagnetism.
Cite
@article{arxiv.2206.12903,
title = {Minkowski's lost legacy and hadron electromagnetism},
author = {Yang Li and Wen-bo Dong and Yi-liang Yin and Qun Wang and James P. Vary},
journal= {arXiv preprint arXiv:2206.12903},
year = {2023}
}
Comments
7 pages, 2 figures; published on Physics Letters B