$D^0-\bar{D}^0$ mixing in the Dyson-Schwinger approach
Abstract
In view of difficulty to reproduce observables in the mixing via the operator product expansion, we discuss the Dyson-Schwinger approach to this process. Formulated by the parametrization of quark propagators, SU(3) breaking relevant to charm mixing is evaluated in such a way that properly takes account of dynamical chiral symmetry breaking. The transition is discussed in the vacuum-insertion approximation with locality of the light valence-quark field, represented by the decay constant of meson as well as relevant momentum integrals. It is found that dimensionless mass-difference observable in this approach leads to , the order of magnitude comparable to the HFLAV data, and thereby offering a certain improvement as a theoretical framework.
Cite
@article{arxiv.2504.11745,
title = {$D^0-\bar{D}^0$ mixing in the Dyson-Schwinger approach},
author = {Xiaotong Xie and Hiroyuki Umeeda and Jinglong Zhu},
journal= {arXiv preprint arXiv:2504.11745},
year = {2025}
}
Comments
22 pages, 2 figures, 3 tables v2: version to be published in PRD