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Neutron stars and the transition to color superconducting quark matter

机译:中子星和超导夸克物质向彩色的转变

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摘要

We explore the relevance of color superconductivity inside a possible quark matter core for the bulk properties of neutron stars. For the quark phase we use a Nambu-Jona-Lasinio (NJL) type model, extended to include diquark condensates. For the hadronic phase, a microscopic many-body model is adopted, with and without strangeness content. In our calculations, a sharp boundary is assumed between the hadronic and the quark phases. For NJL model parameters fitted to vacuum properties we find that no star with a pure quark core does exist. Nevertheless, the presence of color superconducting phases can lower the neutron star maximum mass substantially. In some cases, the transition to quark matter occurs only if color superconductivity is present. Once the quark phase is introduced, the value of the maximum mass stays in any case below the value of two solar masses. (C) 2003 Elsevier Science B.V. All rights reserved. References: 32
机译:我们探索了可能的夸克物质核心内的颜色超导性与中子星本体特性的相关性。对于夸克相,我们使用Nambu-Jona-Lasinio(NJL)型模型,扩展为包括双夸克凝聚体。对于强子阶段,采用微观多体模型,有和没有奇异性。在我们的计算中,假设强子相和夸克相之间有一个尖锐的边界。对于拟合到真空特性的NJL模型参数,我们发现不存在具有纯夸克核心的恒星。然而,彩色超导相的存在可以大大降低中子星的最大质量。在某些情况下,只有当存在颜色超导性时,才会发生向夸克物质的转变。一旦引入夸克相,最大质量的值在任何情况下都保持在两个太阳质量的值以下。(C) 2003 Elsevier Science B.V.保留所有权利。[参考文献: 32]

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