DOE OSTI · 2998167
Five-body systems with Bethe-Salpeter equations
Abstract
We extend the Bethe-Salpeter formalism to systems made of five valence particles. Restricting ourselves to two-body interactions, we derive the subtraction terms necessary to prevent overcounting. We solve the five-body Bethe-Salpeter equation numerically for a system of five scalar particles interacting by a scalar exchange boson. To make the calculations tractable, we implement properties of the permutation group S 5 and construct an approximation based on intermediate two- and three-body poles. We extract the five-body ground and excited states along with the spectra obtained from the two-, three-, and four-body equations. In the limit of a massless exchange particle, the two-, three, four- and five-body states coexist within a certain range of the coupling strength, whereas for heavier exchange particles the five-body system becomes Borromean. Our study serves as a building block for the calculation of pentaquark properties using functional methods.
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Eichmann, Gernot [Univ. of Graz (Austria)] (ORCID:0000000205462533), Peña, M.T. [Univ. of Lisbon (Portugal); Laboratory of Instrumentation and Experimental Particle Physics (LIP) (Portugal)] (ORCID:0000000235292408), Torres, Raul D. [Univ. of Lisbon (Portugal); Laboratory of Instrumentation and Experimental Particle Physics (LIP) (Portugal)] (ORCID:0000000268149173). 2025-05-06. Five-body systems with Bethe-Salpeter equations. https://doi.org/10.1016/j.physletb.2025.139525
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