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cc by (c) American Physical Society, 2020
Please use this identifier to cite or link to this item: https://hdl.handle.net/2445/176966

Effective field theory for double heavy baryons at strong coupling

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We present an effective field theory for doubly heavy baryons that goes beyond the compact heavy diquark approximation. The heavy quark distance r is only restricted to m Q ≫ 1 / r ≫ E bin , where m Q is the mass of the heavy quark and E bin the typical binding energy. This means that the size of the heavy diquark can be as large as the typical size of a light hadron. We start from nonrelativistic QCD, and build the effective field theory at next-to-leading order in the 1 / m Q expansion. At leading order the effective field theory reduces to the Born-Oppenheimer approximation. The Born-Oppenheimer potentials are obtained from available lattice QCD data. The spectrum for double charm baryons below threshold is compatible with most of the lattice QCD results. We present for the first time the full spin averaged double bottom baryon spectrum below threshold based on QCD. We also present model-independent formulas for the spin splittings.

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SOTO RIERA, Joan and TARRÚS CASTELLÀ, Jaume. Effective field theory for double heavy baryons at strong coupling. Physical Review D. 2020. Vol. 102, num. 12, pags. 014013. ISSN 2470-0010. [consulted: 18 of August of 2026]. Available at: https://hdl.handle.net/2445/176966

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