English

Scalar correlator, Higgs decay into quarks, and scheme variations of the QCD coupling

High Energy Physics - Phenomenology 2016-11-23 v2

Abstract

In this work, the perturbative QCD series of the scalar correlation function Ψ(s)\Psi(s) is investigated. Besides ImΨ(s){\rm Im}\Psi(s), which is relevant for Higgs decay into quarks, two other physical correlators, Ψ"(s)\Psi^{"}(s) and DL(s)D^L(s), have been employed in QCD applications like quark mass determinations or hadronic τ\tau decays. DL(s)D^L(s) suffers from large higher-order corrections and, by resorting to the large-β0\beta_0 approximation, it is shown that this is related to a spurious renormalon ambiguity at u=1u=1. Hence, this correlator should be avoided in phenomenological analyses. Moreover, it turns out advantageous to express the quark mass factor, introduced to make the scalar current renormalisation group invariant, in terms of the renormalisation invariant quark mass m^q\hat m_q. To further study the behaviour of the perturbative expansion, we introduce a QCD coupling α^s\hat\alpha_s, whose running is explicitly renormalisation scheme independent. The scheme dependence of α^s\hat\alpha_s is parametrised by a single parameter CC, being related to transformations of the QCD scale parameter Λ\Lambda. It is demonstrated that appropriate choices of CC lead to a substantial improvement in the behaviour of the perturbative series for Ψ"(s)\Psi^{"}(s) and ImΨ(s){\rm Im}\Psi(s).

Keywords

Cite

@article{arxiv.1606.06166,
  title  = {Scalar correlator, Higgs decay into quarks, and scheme variations of the QCD coupling},
  author = {Matthias Jamin and Ramon Miravitllas},
  journal= {arXiv preprint arXiv:1606.06166},
  year   = {2016}
}

Comments

29 pages, 4 figures; minor modifications, version to be published in JHEP