<p>Hexaquarks are generally regarded as exotic particles, many of which remain undetected in experimental studies. This research focusses on the mass spectra of these unique hadrons, particularly hexaquarks in their dibaryon configuration. We conduct a comprehensive analysis of hexaquark states within a two-body framework. By employing the asymptotic iteration method (AIM) to analytically solve the radial Schrödinger equation for the Hulthen, we derive the binding energies and mass spectra for various spin states of charm and bottom hexaquarks. We strongly advocate for future experimental efforts to prioritise the search for double charm and bottom dibaryons.</p>

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Bound-state solutions of the Schrödinger equation for open-charm dibaryons as hexaquarks

  • N Shiri,
  • M Monemzadeh,
  • N Tazimi

摘要

Hexaquarks are generally regarded as exotic particles, many of which remain undetected in experimental studies. This research focusses on the mass spectra of these unique hadrons, particularly hexaquarks in their dibaryon configuration. We conduct a comprehensive analysis of hexaquark states within a two-body framework. By employing the asymptotic iteration method (AIM) to analytically solve the radial Schrödinger equation for the Hulthen, we derive the binding energies and mass spectra for various spin states of charm and bottom hexaquarks. We strongly advocate for future experimental efforts to prioritise the search for double charm and bottom dibaryons.