Annihilation rate of $2^{-+}$ charmonium and bottomonium
Abstract
The state is the ground state of spin-singlet D-wave charmonia. Although it has not been found yet, the experimental data accumulate rapidly. This charmonium attracts more and more attention, especially when the BaBar Collaboration finds that the X(3872) particle has negative parity. In this paper we calculate the double-gamma and double-gluon annihilation processes of charmonia and bottomonia by using the instantaneous Bethe-Salpeter method. We find the relativistic corrections make the decay widths of 25 times smaller than the non-relativistic results. If this state is below the threshold, we can use the sum of annihilation widths and EM transition widths to estimate the total decay width. Our result for with GeV is keV. The dominant decay channel , whose branching ratio is about 90%, can be used to discover this state.
Keywords
Cite
@article{arxiv.1303.1563,
title = {Annihilation rate of $2^{-+}$ charmonium and bottomonium},
author = {Tianhong Wang and Guo-Li Wang and Wan-Li Ju and Yue Jiang},
journal= {arXiv preprint arXiv:1303.1563},
year = {2016}
}
Comments
10 pages, 2 figures