Joint resummation for pion wave function and pion transition form factor

被引:0
作者
Hsiang-nan Li
Yue-Long Shen
Yu-Ming Wang
机构
[1] Academia Sinica,Institute of Physics
[2] National Cheng-Kung University,Department of Physics
[3] National Tsing-Hua University,Department of Physics
[4] Ocean University of China,College of Information Science and Engineering
[5] Physikzentrum Otto-Blumenthal-Straße,Institut für Theoretische Teilchenphysik und Kosmologie RWTH Aachen
[6] Technische Universität München,Physik Department T31
来源
Journal of High Energy Physics | / 2014卷
关键词
Resummation; Electromagnetic Processes and Properties; QCD;
D O I
暂无
中图分类号
学科分类号
摘要
We construct an evolution equation for the pion wave function in the kT factorization formalism, whose solution sums the mixed logarithm ln x ln kT to all orders, with x (kT) being a parton momentum fraction (transverse momentum). This joint resummation induces strong suppression of the pion wave function in the small x and large b regions, b being the impact parameter conjugate to kT, and improves the applicability of perturbative QCD to hard exclusive processes. The above effect is similar to those from the conventional threshold resummation for the double logarithm ln2x and the conventional kT resummation for ln2kT. Combining the evolution equation for the hard kernel, we are able to organize all large logarithms in the γ*π0 → γ scattering, and to establish a scheme-independent kT factorization formula. It will be shown that the significance of next-to-leading-order contributions and saturation behaviors of this process at high energy differ from those under the conventional resummations. It implies that QCD logarithmic corrections to a process must be handled appropriately, before its data are used to extract a hadron wave function. Our predictions for the involved pion transition form factor, derived under the joint resummation and the input of a non-asymptotic pion wave function with the second Gegenbauer moment a2 = 0.05, match reasonably well the CLEO, BaBar, and Belle data.
引用
收藏
相关论文
共 50 条
[21]   Pion elastic and (π0, η, η′) → γγ* transition form factors in a broad range of momentum transfers [J].
Balakireva, Irina ;
Lucha, Wolfgang ;
Melikhov, Dmitri .
PHYSICAL REVIEW D, 2012, 85 (03)
[22]   On the factorization of chiral logarithms in the pion form factors [J].
G. Colangelo ;
M. Procura ;
L. Rothen ;
R. Stucki ;
J. Tarrús Castellà .
Journal of High Energy Physics, 2012
[23]   On the factorization of chiral logarithms in the pion form factors [J].
Colangelo, G. ;
Procura, M. ;
Rothen, L. ;
Stucki, R. ;
Tarrus Castella, J. .
JOURNAL OF HIGH ENERGY PHYSICS, 2012, (09)
[24]   Electromagnetic form factor of pion from Nf = 2 + 1 dynamical flavor QCD [J].
Oanh Hoang Nguyen ;
Ken-Ichi Ishikawa ;
Akira Ukawa ;
Naoya Ukita .
Journal of High Energy Physics, 2011
[25]   Model independent pion electromagnetic form factor behavior in the space-like region [J].
Belicka, M. ;
Dubnicka, S. ;
Dubnickova, A. Z. ;
Liptaj, A. .
NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2010, 198 :143-148
[26]   The pion's electromagnetic form factor at small momentum transfer in full lattice QCD [J].
Boyle, P. A. ;
Flynn, J. M. ;
Juettner, A. ;
Kelly, C. ;
de Lima, H. Pedroso ;
Maynard, C. M. ;
Sachrajda, C. T. ;
Zanotti, J. M. .
JOURNAL OF HIGH ENERGY PHYSICS, 2008, (07)
[27]   Systematic estimation of theoretical uncertainties in the calculation of the pion-photon transition form factor using light-cone sum rules [J].
Mikhailov, S. V. ;
Pimikov, A. V. ;
Stefanis, N. G. .
PHYSICAL REVIEW D, 2016, 93 (11)
[28]   Photon-pion transition form factor of two photon process at BESIII from light-cone quantum field theory [J].
Xian, Yining ;
Ma, Bo-Qiang .
NUCLEAR PHYSICS A, 2022, 1027
[29]   Pion and kaon form factors in the perturbative QCD approach [J].
Cheng, Shan .
PHYSICAL REVIEW D, 2019, 100 (01)
[30]   Lattice calculation of pion form factors with overlap fermions [J].
Wang, Gen ;
Liang, Jian ;
Draper, Terrence ;
Liu, Keh-Fei ;
Yang, Yi-Bo .
PHYSICAL REVIEW D, 2021, 104 (07)