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Three Baryon Interaction Generated by Determinant Interaction of Quarks

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arxiv 1610.06306 v1 pith:KF24E2BP submitted 2016-10-20 nucl-th

classification nucl-th
keywords interactionlambdapotentialfoundmatternuclearthree-baryonbaryon
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abstract

We discuss the three-baryon interaction generated by the determinant interaction of quarks, known as the Kobayashi-Maskawa-'t Hooft (KMT) interaction. The expectation value of the KMT interaction operator is calculated in fully-antisymmetrized quark-cluster model wave functions for one-, two- and three-octet baryon states. The three-baryon potential from the KMT interaction is found to be repulsive for $NN\Lambda$ and $N\Lambda\Lambda$ systems, while it is zero for the $NNN$ system. The strength and range of the three-baryon potential are found to be comparable to those for the $NNN$ three-body potential obtained in lattice QCD simulations. The contribution to the $\Lambda$ single particle potential in nuclear matter is found to be 0.28 MeV and 0.73 MeV in neutron matter and symmetric nuclear matter at normal nuclear density, respectively. These repulsive forces are not enough to solve the hyperon puzzle, but may be measured in high-precision hyperisotope experiments.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Intrinsic three-body nuclear interaction from a constituent quark model

    hep-ph 2019-08 conditional novelty 6.0 of 10

    In the flavor SU(3) symmetric limit, the intrinsic three-nucleon interaction in a constituent quark model vanishes after subtracting two-baryon contributions.

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