A Discussion on Triangle Singularities in the $\Lambda_b \to J/\psi K^{-} p$ Reaction
Abstract
We have analyzed the singularities of a triangle loop integral in detail and derived a formula for an easy evaluation of the triangle singularity on the physical boundary. It is applied to the process via -charmonium-proton intermediate states. Although the evaluation of absolute rates is not possible, we identify the and the as the relatively most relevant states among all possible charmonia up to the . The loop is very special as its normal threshold and triangle singularities merge at about 4.45 GeV, generating a narrow and prominent peak in the amplitude in the case that the is in an -wave. We also see that loops with the same charmonium and other hyperons produce less dramatic peaks from the threshold singularity alone. For the case of and quantum numbers or one needs - and -waves, respectively, in the , which drastically reduce the strength of the contribution and smooth the threshold peak. In this case we conclude that the singularities cannot account for the observed narrow peak. In the case of , quantum numbers, where can proceed in an -wave, the triangle diagram could play an important role, though can neither assert their strength without further input from experiments and lattice QCD calculations.
Cite
@article{arxiv.1609.04133,
title = {A Discussion on Triangle Singularities in the $\Lambda_b \to J/\psi K^{-} p$ Reaction},
author = {Melahat Bayar and Francesca Aceti and Feng-Kun Guo and Eulogio Oset},
journal= {arXiv preprint arXiv:1609.04133},
year = {2016}
}
Comments
17 pages, 7 figures, 2 Tables