Strange Stars in the Color-Flavor Locked Phase

M. Malaver, Prof Dr Hamed Daei Kasmaei
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Abstract

We found new classes of exact models to the Einstein-Maxwell system of equations which describe the internal structure of a compact star made of strange matter considering the equation of state proposed by Rocha, Bernardo, de Avellar and Horvath in 2019. It has been assumed that this matter is composed of equal number of up, down and strange quarks and a small amount of electrons required to reaching the charge neutrality. If this hypothesis is correct, the neutron stars would be strange stars. We have chosen a particular form of gravitational potential Z(x) that depends on an adjustable parameter related to degree of anisotropy of the models and the new solutions can be written in terms of elementary and polynomial functions. The obtained models satisfy all physical features expected in a realistic star and the expressions for mass, density and stellar radius are comparable with the experimental results.
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色-味锁相中的奇异恒星
考虑到Rocha、Bernardo、de Avellar和Horvath在2019年提出的状态方程,我们发现了爱因斯坦-麦克斯韦方程组的新精确模型,这些模型描述了由奇怪物质组成的致密恒星的内部结构。人们假设这种物质是由相同数量的上、下和奇异夸克以及达到电荷中性所需的少量电子组成的。如果这个假设是正确的,中子星将是奇怪的恒星。我们选择了一种特殊形式的重力势Z(x),它取决于与模型各向异性程度相关的可调参数,新的解可以用初等函数和多项式函数来表示。所得模型满足实际恒星的所有物理特征,质量、密度和恒星半径的表达式与实验结果相当。
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