On the nature of near-threshold bound and virtual states

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作者
Inka Matuschek
Vadim Baru
Feng-Kun Guo
Christoph Hanhart
机构
[1] Institut für Kernphysik and Jülich Center for Hadron Physics,Forschungszentrum Jülich, Institute for Advanced Simulation
[2] Universität Bonn,Helmholtz
[3] Institute for Theoretical and Experimental Physics NRC (Kurchatov Institute),Institut für Strahlen
[4] P.N. Lebedev Physical Institute of the Russian Academy of Sciences, und Kernphysik and Bethe Center for Theoretical Physics
[5] Chinese Academy of Sciences,CAS Key Laboratory of Theoretical Physics, Institute of Theoretical Physics
[6] University of Chinese Academy of Sciences,School of Physical Sciences
来源
The European Physical Journal A | 2021年 / 57卷
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摘要
Physical states are characterised uniquely by their pole positions and the corresponding residues. Accordingly, in those parameters also the nature of the states should be encoded. For bound states (poles on the real s-axis below the lowest threshold on the physical sheet) there is an established criterion formulated originally by Weinberg in the 1960s, which allows one to estimate the amount of compact and molecular components in a given state. We demonstrate in this paper that this criterion can be straightforwardly extended to shallow virtual states (poles on the real s-axis below the lowest threshold on the unphysical sheet) which should be classified as molecular. We argue that predominantly non-molecular or compact states exist either as bound states or as resonances (poles on the unphysical sheet off the real energy axis) but not as virtual states. We also discuss the limitations of the mentioned classification scheme.
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