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Exact solutions for compact stars with CFL quark matter

机译:CFL夸克的紧凑型星星的精确解决方案

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摘要

The search for the true ground state of the dense matter remains open since Bodmer, Terazawa and others raised the possibility of stable quark matter, boosted by Witten's strange matter hypothesis in 1984. Within this proposal, the strange matter is assumed to be composed of strange quarks in addition to the usual ups and downs, having an energy per baryon lower than the strangeless counterpart, and even lower than that of nuclear matter. In this sense, neutron stars should actually be strange stars. Later work showed that a paired, symmetric in flavor, color-flavor locked (CFL) state would be preferred to the one without any pairing for a wide range of the parameters (gap Delta, strange quark mass m(s) and bag constant B). We use an approximate, yet very accurate, CFL equation-of-state (EoS) that generalizes the MIT bag model to obtain two families of exact solutions for the static Einstein Field Equations (EFE) constructing families of anisotropic compact relativistic objects. In this fashion, we provide exact useful solutions directly connected with microphysics.
机译:搜索浓密物质的真正地面状态仍然是开放的,因为Bodmer,Terazawa和其他人提出了稳定夸克的可能性,由Witten在1984年推动了奇怪的事情假设。在这一提议中,假设奇怪的事情被奇怪的形式由奇怪的组成除了通常的UPS和下降之外,夸大其低于担心低于亵渎的对应物,甚至低于核事物的能源。从这个意义上讲,中子星实际上应该是奇怪的恒星。后来的工作表明,在没有任何配对的广泛参数(间隙三角形,奇怪的夸克质量m(s)和袋常数b的情况下,将优选燃料的配对,锁定(cfl)状态是优选的。 )。我们使用近似但非常准确的CFL方程(EOS)概括了MIT袋模型,以获得静态爱因斯坦场方程(EFE)构建各向异性紧凑型物体的家庭的两个精确解决方案的一个精确解决方案。以这种方式,我们提供直接与微妙连接的确切有用的解决方案。

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