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arXiv:2602.05941·v2·High Energy Physics — Lattice

Quantum Simulation of Bound and Resonant Doubly-Bottom Tetraquark

Ayanendu Dutta🇮🇳

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Abstract

We present the first quantum-simulation study of bound and resonant doubly-bottom tetraquark states within a QCD-inspired chiral quark model. An effective four-quark Hamiltonian is mapped onto a 16-qubit register, encoding color, spin, and spatial degrees of freedom, and incorporating both meson-meson and diquark-antidiquark configurations with complete color bases. Using a variational quantum eigensolver, we identify bound and resonance states in the low-lying -wave sector. Deeply bound states are found exclusively in the isoscalar channel, dominated by color-singlet meson-meson components with non-negligible hidden-color contributions. The resulting masses and binding energies are consistent with classical chiral quark model predictions, establishing quantum simulation as a viable framework for studying exotic multiquark states beyond the reach of conventional methods.

Comments: Withdrawn to address technical and presentation issues identified in the current draft. The paper will be revised and resubmitted