English

Automatic Fine-Tuning in the 2-Flavor Schwinger Model

High Energy Physics - Theory 2020-11-04 v4

Abstract

I discuss the 2-flavor Schwinger model both without and with fermion masses. I argue that the concept of "conformal coalescence," in unparticle physics in which linear combinations of short distance operators can disappear from the long-distance theory, makes it easy to understand some puzzling features of the model with small fermion masses. In particular, I argue that for an average fermion mass mfm_f and a mass difference δm\delta m, so long as both are small compared to the dynamical gauge boson mass m=e2/πm=e\sqrt{2/\pi}, isospin breaking effects in the low energy theory are exponentially suppressed by powers of exp((m/mf)2/3)\exp\Bigl(-(m/m_f)^{2/3}\Bigr) even if δmmf\delta m\approx m_f! In the low energy theory, this looks like exponential fine-tuning, but it is done automatically by conformal coalescence.

Keywords

Cite

@article{arxiv.2007.15965,
  title  = {Automatic Fine-Tuning in the 2-Flavor Schwinger Model},
  author = {Howard Georgi},
  journal= {arXiv preprint arXiv:2007.15965},
  year   = {2020}
}

Comments

8 pages (suggestions of referees incorporated)

R2 v1 2026-06-23T17:33:07.462Z