Diffusion Monte Carlo calculations of fully-heavy compact hexaquarks
arXiv:2205.13886 · doi:10.1103/PhysRevD.106.114028
Abstract
We used a diffusion Monte Carlo technique to describe the properties of fully-heavy compact arrangements (no dibaryon molecules) including six quarks and no antiquarks within the framewok of a constituent quark model. Only arrangements whose wavefunctions were eigenvectors of with eigenvalue = 0 were taken into account, what means that we only considered the subset of all the possible color-spin combinations that make the total wavefunctions antisymmetric with respect to the interchange of any two quarks of the same type. This means arrangements with spin for , , , and and spin for the and hexaquarks. In all cases, the masses of the six-quark arrangements are larger that the ones corresponding to the sum of any of the two baryons we can split them into, but smaller that the ones for a set of six isolated quarks, i.e., all them are bound systems. The analysis of their structure indicates that all the hexaquarks considered in this work are compact objects, except the , that appears to be a loose association of two baryons.
5 pages, 4 figures; Paper has been structured in parts. Method part has been rewritten to clarify some steps. Results for cccccb and bbbbbc 1+ states and cccbbb 1+, 2+ and 3+ states has been added
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