arXiv:1012.3933·v2·Nuclear Theory
Energy Level Displacement of Excited np State of Kaonic Deuterium In Faddeev Equation Approach
M. Faber🇦🇹 · M. P. Faifman🇷🇺 · A. N. Ivanov🇦🇹 · J. Marton🇦🇹 · M. Pitschmann🇦🇹 · N. I. Troitskaya🇷🇺
Abstract
We calculate the energy level displacement of the excited state of kaonic deuterium in terms of the P-wave scattering length of scattering. We solve the Faddeev equations for the amplitude of scattering in the fixed centre approximation and derive the complex P-wave scattering length of scattering in terms of the S-wave and P-wave scattering lengths of scattering. The estimated uncertainty of the complex P-wave scattering length is of about . For the calculated width of the excited state of kaonic deuterium we evaluate the yield of -rays for the emission line of kaonic deuterium. Using the complex S-wave and P-wave scattering lengths of scattering, calculated in \cite{ECL1,Weise1}, we get the width of the excited state and the yield of -rays for the emission line of kaonic deuterium. The results, obtained in this paper, can be used for the planning of experiments on the measurements of the energy level displacement of the ground state of kaonic deuterium, caused by strong low-energy interactions.
Comments: 13 pages