A tale of Bethe logarithms: leptonic widths of $\chi_{cJ}$ and Lamb shift
Yu Jia, Jichen Pan

TL;DR
This paper addresses the infrared divergence in leptonic widths of P-wave quarkonia by including higher Fock states, providing IR-finite predictions and revealing differences in Bethe logarithms compared to Lamb shift.
Contribution
It introduces a complete solution to IR divergence in quarkonium leptonic widths by incorporating higher Fock components, leading to finite, scale-independent predictions.
Findings
Predicted sizable leptonic widths for $ ext{chi}_{cJ}$ states.
Different traits of Bethe logarithms compared to Lamb shift.
Prospects for observing $ ext{chi}_{cJ}$ states at BESIII.
Abstract
The rare annihilation decays of -wave spin-triplet quarkonia into lepton pair have to proceed via two-photon intermediate state, which are plagued with the infrared divergence symptom. We recognize that the physical root of the IR divergence and its remedy is the same as the Lamb shift in QED. In this work we provide a complete solution to this IR problem by including the effect of the higher Fock component of the state, {\it viz.}, the pair accompanied with a very long wavelength photon. Adding the contributions from the leading and next-to-leading order Fock components together, we arrive at the IR finite and factorization scale independent predictions for leptonic widths of . The Bethe logarithms associated with these exclusive reactions are found to have rather different traits from those associated with Lamb shift. We present…
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Taxonomy
TopicsAnalytic Number Theory Research · Advanced Algebra and Geometry · Mathematical functions and polynomials
