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In-medium properties of the low-lying strange, charm, and bottom baryons in the quark-meson coupling model

机译:夸克介子耦合模型中处于低位的奇异,魅力和底部重子的中等性质

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In-medium properties of the low-lying strange, charm, and bottom baryons in symmetric nuclear matter are studied in the quark-meson coupling (QMC) model. Results for the Lorentz-scalar effective masses, mean field potentials felt by the light quarks in the baryons, in-medium bag radii, and the lowest mode bag eigenvalues are presented for those calculated using the updated data. This study completes the in-medium properties of the low-lying baryons in symmetric nuclear matter in the QMC model, for the strange, charm, and bottom baryons which contain one or two strange, one charm, or one bottom quark, as well as at least one light quark. The highlight is the prediction of the bottom baryon Lorentz-scalar effective masses; namely, the Lorentz-scalar effective mass of Σ b becomes smaller than that of Ξ b at moderate nuclear matter density, m Σ b * < m Ξ b * , although in vacuum m Σ b > m Ξ b . We study further the effects of the repulsive Lorentz-vector potentials on the excitation (total) energies of these bottom baryons.
机译:在夸克-介子耦合(QMC)模型中研究了对称核物质中低位奇异,魅力和底部重子的中等性质。对于使用最新数据计算出的结果,给出了洛伦兹标量有效质量,重子轻夸克感觉到的平均场势,中袋半径和最低模式袋特征值的结果。这项研究完成了QMC模型中对称核物质中低洼重子的中等性质,因为奇异,魅力和底部重子包含一个或两个奇怪,一个魅力或一个底夸克,以及至少一个轻夸克。重点是对底部重子洛伦兹标量有效质量的预测;即,尽管在真空中,当mΣb> mΞb时,在适度的核物质密度mΣb *

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