Charmonium spectroscopy motivated by general features of pNRQCD
Abstract
Mass spectrum of charmonium is computed in the framework of potential non-relativistic quantum chromodynamics. \textit{O} and \textit{O} relativistic corrections to the Cornell potential and spin-dependent potential have been added, and is solved numerically. New experimentally observed and modified positive and negative parity states like , , , , , and near open-flavor threshold have also been studied. We explain them as admixtures of S-D wave states and P-wave states. Apart from these states, some other states like , , and have been identified as , , and states. Subsequently, the electromagnetic transition widths and , , light hadron and decay widths of several states are calculated at various leading orders. All the calculated results are compared with experimental and results from various theoretical models.
Keywords
Cite
@article{arxiv.1910.06025,
title = {Charmonium spectroscopy motivated by general features of pNRQCD},
author = {Raghav Chaturvedi and Ajay Kumar Rai},
journal= {arXiv preprint arXiv:1910.06025},
year = {2020}
}
Comments
17 pages, 4 figures (Suggestions and comments are invited)