论文标题

中子星体内超子签名的贝叶斯推断

Bayesian inference of signatures of hyperons inside neutron stars

论文作者

Malik, Tuhin, Providência, Constança

论文摘要

在基于密度依赖性的相对论均值均值场描述的贝叶斯推理框架中,讨论了中子恒星内部恒星内部存在的可能的签名。核物质特性,超肺特性和观察信息用于限制模型。讨论了中性恒星的一般特性,例如最大质量,半径,潮汐变形性,质子分数,超子级分和声音速度。结果表明,这两个太阳质量约束施加的是,由包括超级子在内的状态等式描述的中子星平均具有更大的半径,$ \ gtrsim 0.5 $ km和更大的潮汐变形性,$ \ gtrsim 150 $,而不是由状态的核方程式确定的恒星,而声音的中心速度是高于25 \%的速度。如果用半径为$ \ lyssim 12.5 $ km的1.4 m $ _ \ odot $ star测量,则同一型号描述的巨大恒星包含超子是非常不可能的。如果观察到具有半径$ \ lyssim 11.5 $ km的两个太阳能大量恒星,或者观察到质量高于2.2 m $ $ _ \ odot $,则得出类似的结论:排除了这些恒星的超声含量的可能性。中子星内的超子存在与脉冲星PSR J0030+0451和PSR J0740+6620和重力波检测GW170817的当前质量 - 拉迪乌斯观测值兼容。 {显示的是,如果多粒子索引$γ= \ partial \ ln p/\ partial \lnε$以不太大的密度为1.75的值的值,则可能表明某种外来物质的发作,但不一定是剥落的夸张问题。

The possible signatures of the presence of hyperons inside neutron stars are discussed within a Bayesian inference framework applied to a set of models based on a density-dependent relativistic mean-field description of hadronic matter. Nuclear matter properties, hypernuclei properties, and observational information are used to constrain the models. General properties of neutron stars such as the maximum mass, radius, tidal deformability, proton fraction, hyperon fraction, and speed of sound are discussed. It is shown that the two solar mass constraint imposes that neutron stars described by equations of state that include hyperons have on average a larger radius, $\gtrsim 0.5$km, and a larger tidal deformability, $\gtrsim 150$, than the stars determined from a nucleonic equation of state, while the speed of sound at the center of the star is more than 25\% smaller. If a 1.4 M$_\odot$ star with a radius $\lesssim 12.5$ km is measured it is quite improbable that a massive star described by the same model contains hyperons. A similar conclusion is drawn if a two solar mass star with a radius $\lesssim 11.5$ km or a neutron star with a mass above 2.2 M$_\odot$ is observed: the possible hyperon content of these stars is ruled out or very reduced. The hyperon presence inside neutron stars is compatible with the present NICER mass-radius observations of the pulsars PSR J0030+0451 and PSR J0740+6620 and the gravitational wave detection GW170817. {It is shown that if the polytropic index $γ=\partial\ln p/\partial\lnε$ takes values of the order of 1.75 at not too large densities, it may indicate the onset of some kind of exotic matter, but not necessarily of deconfined quark matter.

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