English

Mass inequalities for baryons with heavy quarks

High Energy Physics - Phenomenology 2020-02-26 v4

Abstract

Baryons with one or more heavy quarks have been shown, in the context of a nonrelativistic description, to exhibit mass inequalities under permutations of their quarks, when spin averages are taken. These inequalities sometimes are invalidated when spin-dependent forces are taken into account. A notable instance is the inequality 2E(Mmm)>E(MMm)+E(mmm)2E(Mmm) > E(MMm) + E(mmm), where m=mu=mdm = m_u = m_d, satisfied for M=mbM = m_b or M=mcM = m_c but not for M=msM = m_s, unless care is taken to remove effects of spin-spin interactions. Thus in the quark-level analog of nuclear fusion, the reactions ΛbΛbΞbbN\Lambda_b \Lambda_b \to \Xi_{bb}N and ΛcΛcΞcc++n\Lambda_c \Lambda_c \to \Xi_{cc}^{++}n are exothermic, releasing respectively 138 and 12 MeV, while ΛΛΞN\Lambda \Lambda \to \Xi N is endothermic, requiring an input of between 23 and 29 MeV. Here we explore such mass inequalities in the context of an approach, previously shown to predict masses successfully, in which contributions consist of additive constituent-quark masses, spin-spin interactions, and additional binding terms for pairs each member of which is at least as heavy as a strange quark.

Keywords

Cite

@article{arxiv.1912.03204,
  title  = {Mass inequalities for baryons with heavy quarks},
  author = {Marek Karliner and Jonathan L. Rosner},
  journal= {arXiv preprint arXiv:1912.03204},
  year   = {2020}
}

Comments

6 pages, no figures. Discussion of spin-spin interactions added. To be published in Phys. Rev. D