English

Vector current renormalisation in momentum subtraction schemes using the HISQ action

High Energy Physics - Lattice 2019-08-28 v1

Abstract

As the only lattice vector current that does not require renormalisation is the point-split conserved current it is convenient to have a robust, precise and computationally cheap methodology for the calculation of vector current renormalisation factors, ZVZ_V. Momentum subtraction schemes, such as RI-SMOM, implemented nonperturbatively on the lattice provide such a method if it can be shown that the systematic errors, e.g. from condensates, are well controlled. We present ZVZ_V calculations for the conserved current in both the RI-SMOM and RI'-MOM momentum subtraction schemes as well as local current renormalisation in the RI-SMOM scheme. By performing these calculations at various values of the momentum scale μ\mu and different lattice spacings we can investigate the presence of power suppressed nonperturbative contributions and compare the results to expectations arising from the Ward-Takahashi identity. Our results show that the RI-SMOM scheme provides a well controlled determination of ZVZ_V but the standard RI'-MOM scheme does not. We then present some preliminary uses of these ZVZ_V calculations in charm physics.

Cite

@article{arxiv.1908.10116,
  title  = {Vector current renormalisation in momentum subtraction schemes using the HISQ action},
  author = {D. Hatton and C. T. H. Davies and G. P. Lepage and A. T. Lytle},
  journal= {arXiv preprint arXiv:1908.10116},
  year   = {2019}
}

Comments

Proceedings of Lattice 2019

R2 v1 2026-06-23T10:57:47.966Z