English

DSE Perspective on QCD Modeling, Distribution Amplitudes, and Form Factors

High Energy Physics - Phenomenology 2014-07-03 v1 High Energy Physics - Lattice Nuclear Theory

Abstract

We describe results for the pion distribution amplitude (PDA) at the non-perturbative scale μ= \mu=~2GeV by projecting the Poincar\'e-covariant Bethe-Salpeter wave-function onto the light-front and use it to investigate the ultraviolet behavior of the electromagnetic form factor, Fπ(Q2)F_\pi(Q^2), on the entire domain of spacelike Q2Q^2. The significant dilation of this PDA compared to the known asymptotic PDA is a signature of dynamical chiral symmetry breaking (DCSB) on the light front. We investigate the transition region of Q2Q^2 where non-perturbative behavior of constituent-like quarks gives way to the partonic-like behavior of quantum chromodynamics (QCD). The non-perturbative approach is based on the Dyson-Schwinger equation (DSE) framework for continuum investigations in QCD. The leading-order, leading-twist perturbative QCD result for Q2Fπ(Q2)Q^2 F_\pi(Q^2) underestimates the new DSE computation by just 15\% on Q28Q^2\gtrsim 8\,GeV2^2, in stark contrast with the result obtained using the asymptotic PDA.

Keywords

Cite

@article{arxiv.1407.0494,
  title  = {DSE Perspective on QCD Modeling, Distribution Amplitudes, and Form Factors},
  author = {Peter C Tandy},
  journal= {arXiv preprint arXiv:1407.0494},
  year   = {2014}
}

Comments

9.5 pages, 4 figures, invited presentation at the Light-Cone 2013 Workshop, Skiathos, Greece. Published 24 May 2014

R2 v1 2026-06-22T04:53:12.308Z