论文标题

夸克在轻中子星中

Quark matter in light neutron stars

论文作者

Ferreira, Márcio, Pereira, Renan Câmara, Providência, Constança

论文摘要

高阶排斥相互作用包括在三种味道NJL模型中,以描述混合恒星的夸克相。分析了4 QUARK和8 QUARK矢量 - 等距相互作用在混合恒星构型稳定性中的影响。人们认为,在$ m(r)$图中生成大型夸克分支至关重要。这是由于其对状态的夸克物质方程的僵硬作用,这是由于声音速度的非线性密度依赖性产生的。此附加的交互通道允许在中度低NS质量,$ \ sim 1M _ {\ odot} $中出现夸克芯,并提供了所需的排斥,以将星稳定性保留到$ \ sim21M21M _ {\ odot} $。此外,我们表明,生成最重的NS质量,$ m _ {\ text {max}} $及其半径,$ r _ {\ text {max}} $,对8-Quark vector-iSscalar通道的强度非常敏感,导致$ r _ {$ r _ {max}的增长,导致了大量降低。这种行为烙印与$λ(m)$图中的纯粹的状态状态方程式存在相当大的偏差,这可能是夸克物质存在的可能签名,即使对于中等低的NS质量,$ \ sim 1.4 \,m_ \ odot $。由此产生的$ m(r)$和$λ(r)$关系分别符合来自MICEL和LIGO/PIRGO观察的最新天体物理约束。

Higher-order repulsive interactions are included in the three-flavor NJL model in order to describe the quark phase of an hybrid star. The effect of 4-quark and 8-quark vector-isoscalar interactions in the stability of hybrid star configurations is analyzed. The presence of a 8-quark vector-isoscalar channel is seen to be crucial in generating large quark branches in the $M(R)$ diagram. This is due to its stiffening effect on the quark matter equation of state which arises from the non-linear density dependence of the speed of sound. This additional interaction channel allows for the appearance of a quark core at moderately low NS masses, $\sim 1M_{\odot}$, and provides the required repulsion to preserve the star stability up to $\sim2.1M_{\odot}$. Furthermore, we show that both the heaviest NS mass generated, $M_{\text{max}}$, and its radii, $R_{\text{max}}$, are quite sensitive to the strength of 8-quark vector-isoscalar channel, leading to a considerable decrease of $R_{\text{max}}$ as the coupling increases. This behavior imprints a considerable deviation from the purely hadronic matter equation of state in the $Λ(M)$ diagram, which might be a possible signature of the quark matter existence, even for moderately low NS masses, $\sim 1.4\, M_\odot$. The resulting $M(R)$ and $Λ(R)$ relations are in accordance with the latest astrophysical constraints from NICER and Ligo/VIRGO observations, respectively.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源