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arXiv:2108.06521·v2·High Energy Physics — Phenomenology

Mass-Spectroscopy of [] and [] tetraquark states in a diquark-antidiquark formalism

Rohit Tiwari🇮🇳 · D. P. Rathaud🇮🇳 · Ajay Kumar Rai🇮🇳

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Abstract

In this article, we utilise the non-relativistic potential model to calculate the mass-spectra of all bottom [] and heavy-light bottom [] (q=u,d) tetraquark states in diquark-antidiquark approximation. The four-body problem is reduced into two-body problems by numerically solving the equation using a cornell-inspired potential along with relativistic correction term. The splitting structure of the tetraquark spectrum is described using spin-dependent terms (spin-spin, spin-orbit, and tensor). We have successfully calculated and predicted the masses of bottom mesons, diquarks and tetraquarks. The masses of S and P-wave tetraquark states [] and [], respectively, are found to be between 18.7-19.4 GeV and 10.4-11.3 GeV, in which the masses of S-wave [] states are less than the 2, , and 2 threshold. Additionally, we investigated the and states in the current model and found that they are 150 MeV below the and thresholds.

Comments: 12 pages, accepted for the publication in EPJ A

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