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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Phase transition to color-flavor-locked matter and condensation of Goldstone bosons in neutron star matter
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Phase transition to color-flavor-locked matter and condensation of Goldstone bosons in neutron star matter

机译:中子星物质中相变成色锁物质和金石玻色子的凝结

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摘要

Deconfinement phase transition and condensation of Goldstone bosons in neutron star matter are investigated in a chiral hadronic model (also referred as to the FST model) for the hadronic phase (HP) and in the color-flavor-locked (CFL) quark model for the deconfined quark phase. It is shown that the hadronic-CFL mixed phase (MP) exists in the center of neutron stars with a small bag constant, while the CFL quark matter cannot appear in neutron stars when a large bag constant is taken. Color superconductivity softens the equation of state (EOS) and decreases the maximum mass of neutron stars compared with the unpaired quark matter. The K-0 condensation in the CFL phase has no remarkable contribution to the EOS and properties of neutron star matter. The EOS and the properties of neutron star matter are sensitive to the bag constant B, the strange quark mass m(s) and the color superconducting gap Delta. Increasing B and m(s) or decreasing Delta can stiffen the EOS which results in the larger maximum masses of neutron stars.
机译:在强子相(HP)的手性强子模型(也称为FST模型)和色子锁色(CFL)夸克模型中,研究了中子星物质中金石玻色子的去约束相转变和缩合。限定夸克相。研究表明,强子-CFL混合相(MP)存在于中子星中心,具有较小的袋常数,而当采用大袋常数时,CFL夸克物质不会出现在中子星中。与未配对的夸克物质相比,颜色超导性软化了状态方程(EOS)并降低了中子星的最大质量。 CFL相中的K-0冷凝对EOS和中子星物质的性质没有显着贡献。 EOS和中子星物质的性质对布袋常数B,奇夸克质量m(s)和颜色超导间隙Delta敏感。增加B和m(s)或减小Delta可以使EOS变硬,从而导致更大的中子星最大质量。

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