χc2 tensor meson transition form factors in the light front approach

Author:

Babiarz IzabelaORCID,Pasechnik RomanORCID,Schäfer WolfgangORCID,Szczurek AntoniORCID

Abstract

Abstract We continue our work on the light-front formulation of quarkonium γγ transition form factors, extending the formalism to JPC = 2++ tensor meson states. We present an analysis of γγχc2 transition amplitude and the pertinent helicity form factors. Our relativistic formalism is based on the light-front quark-antiquark wave function of the quarkonium. We calculate the two-photon decay width as well as three independent γγ transition form factors for Jz = 0, 1, 2 as a function of photon virtuality Q2. We compare our results for the two-photon decay width to the recently measured ones by the Belle and BES III collaborations. Even when including relativistic corrections, a very small Γ(λ = 0)/Γ(λ = 2) ~ 103 ratio is found which is beyond present experimental precision. We also present the form factors as a function of photon virtuality and compare them to the sparse experimental data on the so-called off-shell width. The formalism presented here can be used for other 2++ mesons, excited charmonia or bottomonia or even light $$ q\overline{q} $$ q q ¯ -mesons.

Publisher

Springer Science and Business Media LLC

Reference38 articles.

1. Belle collaboration, Observation of an alternative χc0(2P) candidate in e+e− → $$ J/\psi D\overline{D} $$, Phys. Rev. D 95 (2017) 112003 [arXiv:1704.01872] [INSPIRE].

2. Belle collaboration, Study of $$ {K}_S^0 $$ pair production in single-tag two-photon collisions, Phys. Rev. D 97 (2018) 052003 [arXiv:1712.02145] [INSPIRE].

3. Belle collaboration, Measurement of two-photon decay width of χc2(1P) in γγ → χc2(1P) → J/ψγ at Belle, JHEP 01 (2023) 160 [arXiv:2208.04477] [INSPIRE].

4. Belle collaboration, First measurement of the Q2 distribution of X(3915) single-tag two-photon production, Phys. Rev. D 108 (2023) 012004 [arXiv:2301.09421] [INSPIRE].

5. BESIII collaboration, Two-photon widths of the χc0,2 states and helicity analysis for χc2 → γγ, Phys. Rev. D 85 (2012) 112008 [arXiv:1205.4284] [INSPIRE].

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