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Investigation of S-wave tetraquark bound and resonant states with all Jacobi coordinates

Published 28 Aug 2026 in hep-ph, hep-ex, and nucl-th | (2608.28284v1)

Abstract: We systematically explore the SS-wave tetraquark systems QsnˉnˉQs\bar{n}\bar{n}, QQnˉnˉQQ\bar{n}\bar{n}, QQQˉQˉQQ\bar{Q}\bar{Q}, and sssˉsˉss\bar{s}\bar{s} (Q=c,bQ=c,b; n=u,dn=u,d) within the constituent quark potential model. We incorporate all K-type Jacobi coordinates in addition to the conventional H-type configurations, optimize the basis expansion via a stochastic parameter generation strategy, and apply the complex scaling method to identify bound and resonant states. Our calculations demonstrate that while conventional H-type configurations suffice for low-lying states such as the Tcc(3875)<sup>+T_{cc}(3875)<sup>+ molecular candidate, the inclusion of K-type configurations becomes important for extracting highly excited resonances, allowing higher-energy resonances absent in H-only calculations to be identified. Furthermore, we identify resonance candidates for the Tcs0(2900)T_{cs0}(2900), X(6900)X(6900), and X(7200)X(7200), whereas the absence of fully-strange compact poles below 2.6 GeV challenges the interpretation of φ(2170)φ(2170) and X(2370)X(2370) as SS-wave compact sssˉsˉs s \bar{s} \bar{s} tetraquarks.

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