Size measurement of dynamically generated hadronic resonances with finite volume effect
Abstract
The structures of the hyperon resonance and the scalar mesons , , and are investigated based on the coupled-channels chiral dynamics with finite volume effect. The finite volume effect is utilized to extract the coupling constant, compositeness, and mean squared distance between two constituents of a Feshbach resonance state as well as a stable bound state. In this framework, the real-valued size of the resonance can be defined from the downward shift of the resonance pole according to the decreasing finite box size on a given closed channel. As a result, we observe that, when putting the and channels into a finite box while other channels being unchanged, the poles of the higher and move to lower energies while other poles do not show downward mass shift, which implies large and components inside higher and , respectively. Extracting structures of and in our method, we find that the compositeness of () inside [] is 0.82-1.03 (0.73-0.97) and the mean distance between two constituents is evaluated as 1.7-1.9 fm (2.6-3.0 fm).
Keywords
Cite
@article{arxiv.1401.7105,
title = {Size measurement of dynamically generated hadronic resonances with finite volume effect},
author = {Takayasu Sekihara and Tetsuo Hyodo},
journal= {arXiv preprint arXiv:1401.7105},
year = {2014}
}
Comments
5 pages, 1 figure, talk given at XV International Conference on Hadron Spectroscopy (Hadron 2013), Nara, Japan, 4-8 November 2013