TY - JOUR
T1 - Borel-Laplace sum rules with τ decay data, using OPE with improved anomalous dimensions
AU - Ayala, César
AU - Cvetič, Gorazd
AU - Teca, Diego
N1 - Publisher Copyright:
© 2023 The Author(s). Published by IOP Publishing Ltd.
PY - 2023/4
Y1 - 2023/4
N2 - We perform numerical analysis of double-pinched Borel-Laplace QCD sum rules for the strangeless semihadronic τ-decay data. The D = 0 contribution to the theoretical contour integral in the sum rules is evaluated by the (truncated) Fixed Order perturbation theory method (FO) and by the Principal Value (PV) of the Borel integration. We use for the full Adler function the operator product expansion (OPE) with the terms ∼〈O D 〉 of dimension D = 2n where 2 ≤ n ≤ 5 for the (V+A)-channel, and 2 ≤ n ≤ 7 for the V-channel data. In our previous works Ayala, Cvetič and Teca (2021, Eur. Phys. J. C 81 930), Ayala, Cvetič and Teca (2022, Eur. Phys. J. C 82 362), only the (V+A)-channel data was analysed. In this work, the analysis of a new set of V-channel data is performed as well. Further, a renormalon-motivated construction of the D = 0 part of the Adler function is improved in the u = 3 infrared renormalon sector, by involving the recently known information on the two principal noninteger values k ( j ) = γ ( 1 ) ( O 6 ( j ) ) / β 0 of the effective leading-order anomalous dimensions. Additionally, the OPE of the Adler function has now the D = 6 contribution with the principal anomalous dimension ( ∼ α s k ( 1 ) ), and terms of higher dimension (with zero anomalous dimension). Cross-checks of the obtained extracted values of α s and of the condensates were performed by reproduction of the (central) experimental values of several double-pinched momenta a (2,n). The averaged final extracted values of the ( MS ¯ ) coupling are: α s ( m τ 2 ) = 0.3169 − 0.0096 + 0.0070 , corresponding to α s ( M Z 2 ) = 0.1183 − 0.0012 + 0.0009 .
AB - We perform numerical analysis of double-pinched Borel-Laplace QCD sum rules for the strangeless semihadronic τ-decay data. The D = 0 contribution to the theoretical contour integral in the sum rules is evaluated by the (truncated) Fixed Order perturbation theory method (FO) and by the Principal Value (PV) of the Borel integration. We use for the full Adler function the operator product expansion (OPE) with the terms ∼〈O D 〉 of dimension D = 2n where 2 ≤ n ≤ 5 for the (V+A)-channel, and 2 ≤ n ≤ 7 for the V-channel data. In our previous works Ayala, Cvetič and Teca (2021, Eur. Phys. J. C 81 930), Ayala, Cvetič and Teca (2022, Eur. Phys. J. C 82 362), only the (V+A)-channel data was analysed. In this work, the analysis of a new set of V-channel data is performed as well. Further, a renormalon-motivated construction of the D = 0 part of the Adler function is improved in the u = 3 infrared renormalon sector, by involving the recently known information on the two principal noninteger values k ( j ) = γ ( 1 ) ( O 6 ( j ) ) / β 0 of the effective leading-order anomalous dimensions. Additionally, the OPE of the Adler function has now the D = 6 contribution with the principal anomalous dimension ( ∼ α s k ( 1 ) ), and terms of higher dimension (with zero anomalous dimension). Cross-checks of the obtained extracted values of α s and of the condensates were performed by reproduction of the (central) experimental values of several double-pinched momenta a (2,n). The averaged final extracted values of the ( MS ¯ ) coupling are: α s ( m τ 2 ) = 0.3169 − 0.0096 + 0.0070 , corresponding to α s ( M Z 2 ) = 0.1183 − 0.0012 + 0.0009 .
KW - QCD phenomenology
KW - perturbative QCD
KW - renormalons
KW - semihadronic τ decays
UR - https://www.scopus.com/pages/publications/85150510040
U2 - 10.1088/1361-6471/acbd65
DO - 10.1088/1361-6471/acbd65
M3 - Article
AN - SCOPUS:85150510040
SN - 0954-3899
VL - 50
JO - Journal of Physics G: Nuclear and Particle Physics
JF - Journal of Physics G: Nuclear and Particle Physics
IS - 4
M1 - 045004
ER -