English

Understanding Interquark Force and Quark Masses in Perturbative QCD

High Energy Physics - Phenomenology 2014-12-01 v1 Nuclear Theory

Abstract

This lecture note presents a self-contained introduction to the theory of a heavy quark-antiquark (QQˉQ\bar{Q}) system in terms of perturbative QCD. The lecture is intended for non-experts, such as graduate course students. The heavy QQˉQ\bar{Q} system serves as an ideal laboratory for testing various aspects of QCD: We can examine the nature of renormalons in perturbative series; an effective field theory Potential-NRQCD is constructed, whose derivation from full QCD can be traced stepwise; we see absorption of renormalons by non-perturbative matrix elements in OPE clearly; a systematic short-distance expansion of UV contributions can be performed, which predicts a "Coulomb+linear" potential in perturbative QCD; we can test these theoretical formulations by comparison to lattice computations, where we observe a significant overlap with perturbative regime; finally we can test our microscopic understanding by comparing to experimental data for the bottomonium states. These subjects are covered in a concise and elementary manner. Overall, we provide a microscopic description of the main dynamics of a heavy QQˉQ\bar{Q} system, as an example for which theoretical framework, practical computations and qualitative understanding have been most advanced.

Keywords

Cite

@article{arxiv.1411.7853,
  title  = {Understanding Interquark Force and Quark Masses in Perturbative QCD},
  author = {Y. Sumino},
  journal= {arXiv preprint arXiv:1411.7853},
  year   = {2014}
}

Comments

65 pages, 58 figures; Based on the lecture courses given at Rikkyo Univ., Kyoto Univ., Karlsruhe Univ. and Nagoya Univ., during 2012--2014

R2 v1 2026-06-22T07:14:59.085Z