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Optimized Two-Baryon Operators in Lattice QCD

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arxiv 2201.02782 v2 pith:ULU5RLZS submitted 2022-01-08 hep-lat hep-phnucl-th

classification hep-lathep-phnucl-th
keywords operatorsoptimizedlatticestatebaryonsboldsymbolexcitedground
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

A set of optimized interpolating operators which are dominantly coupled to each eigenstate of two baryons on the lattice is constructed by the HAL QCD method. To test its validity, we consider heavy dibaryons $\Omega_{3Q}\Omega_{3Q}$ ($Q=s,c$) calculated by (2+1)-flavor lattice QCD simulations with nearly physical pion mass. The optimized two-baryon operators are shown to provide effective energies of the ground and excited states separately stable as a function of the Euclidean time. Also they agree to the eigenenergies in a finite lattice box obtained from the leading-order HAL QCD potential $V({\boldsymbol{r}})$ within statistical errors. The overlapping factors between the optimized sink operators and the state created by the wall-type source operator indicate that $V( \boldsymbol{r})$ can be reliably extracted, no matter whether the spacetime correlation of two baryons is dominated by the ground state or the excited state. It is suggested that the optimized set of operators is useful for variational studies of hadron-hadron interactions.

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  1. $S$-wave kaon-nucleon interactions from lattice QCD at the physical point

    hep-lat 2025-08 conditional novelty 6.0 of 10

    First physical-point lattice QCD calculation of S-wave kaon-nucleon interactions finds no resonance or bound state, with scattering lengths -0.226(5) fm (I=1) and +0.031(62) fm (I=0).

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