Fundamental Properties of the Proton in Light-Front Zero Modes
High Energy Physics - Phenomenology
2020-10-28 v1 High Energy Physics - Lattice
Nuclear Theory
Abstract
For a proton in the infinite momentum frame, its wave function contains a zero-momentum part (light-front zero-modes) originated from the modification of the QCD vacuum in the presence of the valence quarks, exhibiting a light-front long-range order in the quantum state. This ``non-travelling'' component of the proton contributes to its fundamental properties, including the mass and spin, as well as the naive-time-reversal-odd correlations between transverse momentum and spin. The large momentum effective theory (LaMET) provides a theoretical approach to study the physical properties of the proton's zero-mode ``condensate'' through lattice simulations.
Keywords
Cite
@article{arxiv.2003.04478,
title = {Fundamental Properties of the Proton in Light-Front Zero Modes},
author = {Xiangdong Ji},
journal= {arXiv preprint arXiv:2003.04478},
year = {2020}
}
Comments
5 pages, no figure