English

Size measurement of dynamically generated hadronic resonances with finite volume effect

Nuclear Theory 2014-01-29 v1 High Energy Physics - Lattice High Energy Physics - Phenomenology

Abstract

The structures of the hyperon resonance Λ(1405)\Lambda (1405) and the scalar mesons σ\sigma, f0(980)f_{0}(980), and a0(980)a_{0}(980) 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 LL on a given closed channel. As a result, we observe that, when putting the KˉN\bar{K}N and KKˉK\bar{K} channels into a finite box while other channels being unchanged, the poles of the higher Λ(1405)\Lambda (1405) and f0(980)f_{0}(980) move to lower energies while other poles do not show downward mass shift, which implies large KˉN\bar{K}N and KKˉK\bar{K} components inside higher Λ(1405)\Lambda (1405) and f0(980)f_{0}(980), respectively. Extracting structures of Λ(1405)\Lambda (1405) and f0(980)f_{0}(980) in our method, we find that the compositeness of KˉN\bar{K}N (KKˉK\bar{K}) inside Λ(1405)\Lambda (1405) [f0(980)f_{0}(980)] 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