English

Resolving Charged Hadrons in QED -- Gauge Invariant Interpolating Operators

High Energy Physics - Phenomenology 2023-07-10 v2 High Energy Physics - Lattice

Abstract

Standard interpolating operators for charged mesons, e.g. JB=bˉiγ5uJ_{B} = \bar b i \gamma_5 u for BB^-, are not gauge invariant in QED and therefore problematic for perturbative methods. We propose a gauge invariant interpolating operator by adding an auxiliary charged scalar ΦB\Phi_B, JB(0)=JBΦB{\cal J}_{B}^{(0)} = J_B \, \Phi_B, which reproduces all the universal soft and collinear logs. The modified LSZ-factor is shown to be infrared finite which is a necessary condition for validating the approach. At O(α){\cal O}(\alpha), this is equivalent to a specific Dirac dressing of charged operators. A generalisation thereof, using iterated integrals, establishes the equivalence to all orders and provides a transparent alternative viewpoint. The method is discussed by the example of the leptonic decay BνˉB^- \to \ell^- \bar \nu for which a numerical study is to follow. The formalism itself is valid for any spin, flavour and set of final states (e.g. Bπ0νˉB^- \to \pi^0 \ell^- \bar \nu).

Keywords

Cite

@article{arxiv.2209.06925,
  title  = {Resolving Charged Hadrons in QED -- Gauge Invariant Interpolating Operators},
  author = {Saad Nabeebaccus and Roman Zwicky},
  journal= {arXiv preprint arXiv:2209.06925},
  year   = {2023}
}

Comments

4 Fig, 17 pp + refs, version quasi identical to JHEP version (conclusions unchanged)

R2 v1 2026-06-28T01:19:17.879Z