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Roto-Chemical Heating with Fall-Back Disk Accretion in the Neutron Stars Containing Quark Matter

机译:Roto-Chemical加热,中子恒星含有夸张恒星的倒退盘吸收

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Probing quark matter is one of the important tasks in the studies of neutron stars (NS). Some works explicitly consider the existence of quark matter in the appearance of hybrid star (HS) or pure quark star (QS). In the present work, we study the roto-chemical heating with accretion in HS and QS, and compare their chemical evolution and cooling features with pure NS. Different from HS and NS, there are two jumps in the chemical evolution of QS, which results from the fast direct Urca (Durca) reaction causing the fast recovery to chemical balance. However, the sudden change in the chemical evolution doesn’t provide an obvious heating effect in the thermal evolution. Differently, the roto-chemical heating effect appears both in the accretion phase and spin-down phase of the HS, and the heating platform in the accretion phase relies on the accretion rate. Larger accretion rate results in larger chemical deviation, higher and longer heating platform, and earlier appearance of the heating effect. Interestingly, with the disappearance of the heating effect in the accretion phase, the surface temperature drops fast, which is another possibility of the rapid cooling trend of the NS in Cas A. Furthermore, the surface temperature of the QS is obviously lower than the HS and NS, which is a latent candidate for the explanation of the old classical pulsar J2144-3933 with the lowest known surface temperature.
机译:探测夸克问题是中子恒星(NS)研究中的重要任务之一。有些作品明确地考虑在混合星(HS)或纯夸克明星(QS)的外观中存在夸克问题。在目前的工作中,我们研究了HS和QS中的旋转化学加热,并与纯NS的化学进化和冷却功能进行比较。与HS和NS不同,QS的化学演进中有两次跳跃,这是由快速直接URCA(Durca)反应导致化学平衡的快速恢复。然而,化学进化的突然变化在热进化中没有提供明显的加热效果。不同地,旋转化学加热效果在HS的增生相和旋转阶段都出现,并且加热平台依赖于增生率。较大的吸收率导致较大的化学偏差,更高且更长的加热平台,以及早期的加热效果外观。有趣的是,随着加热效果的消失,表面温度快速下降,这是Cas A中NS的快速冷却趋势的另一种可能性。此外,QS的表面温度明显低于HS并且NS是一种潜在的候选者,用于解释具有最低已知表面温度的旧型脉冲脉冲J2144-3933。

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