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Renormalisation of the tensor current in lattice QCD and the $J/\psi$ tensor decay constant

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arxiv 2008.02024 v2 pith:65M6NFAA submitted 2020-08-05 hep-lat hep-ph

classification hep-lathep-ph
keywords renormalisationtensorconstantdecayfactorslatticeaccuratecondensate
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Lattice QCD calculations of form factors for rare Standard Model processes such as $B \to K \ell^+ \ell^-$ use tensor currents that require renormalisation. These renormalisation factors, $Z_T$, have typically been calculated within perturbation theory and the estimated uncertainties from missing higher order terms are significant. Here we study tensor current renormalisation using lattice implementations of momentum-subtraction schemes. Such schemes are potentially more accurate but have systematic errors from nonperturbative artefacts. To determine and remove these condensate contributions we calculate the ground-state charmonium tensor decay constant, $f_{J/\psi}^T$, which is also of interest in beyond the Standard Model studies. We obtain $f_{J/\psi}^T(\bar{\text{MS}}, 2\ \mathrm{GeV})=0.3927(27)$ GeV, with ratio to the vector decay constant of 0.9569(52), significantly below 1. We also give $Z_T$ factors, converted to the $\bar{\mathrm{MS}}$ scheme, corrected for condensate contamination. This contamination reaches 1.5\% at a renormalisation scale of 2 GeV (in the preferred RI-SMOM scheme) and so must be removed for accurate results.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Heavy-light meson decay constants and hyperfine splittings with the heavy-HISQ method

    hep-lat 2025-02 conditional novelty 7.0 of 10

    A heavy-HISQ lattice QCD calculation yields vector, tensor, and pseudoscalar decay-constant ratios and hyperfine splittings for D(s) and B(s) mesons, including first lattice results for B*_(s) tensor decay constants.

  2. Towards more accurate $B_{(s)}\rightarrow\pi(K)$ and $D_{(s)}\rightarrow\pi(K)$ form factors

    hep-lat 2025-01 conditional novelty 5.0 of 10

    A lattice QCD collaboration shows early progress on computing decay form factors for B to pi, B_s to K, D to pi and D_s to K using heavy HISQ quarks on MILC ensembles, aiming to improve |V_ub| and |V_cd|.

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