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SUPERBURSTS FROM STRANGE STARS

机译:超级明星的超级爆发

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摘要

Recent models of carbon ignition on accreting neutron stars predict superburst ignition depths that are an order of magnitude larger than those observed. We explore a possible solution to this problem, that the compact stars in low-mass X-ray binaries that have shown superbursts are in fact strange stars with a crust of normal matter. We calculate the properties of superbursts on strange stars and the resulting constraints on the properties of strange quark matter. We show that the observed ignition conditions exclude fast neutrino emission in the quark core, for example, by the direct Urca process, which implies that strange quark matter at stellar densities should be in a color superconducting state. For slow neutrino emission in the quark matter core, we find that reproducing superburst properties requires a definite relation between three poorly constrained properties of strange quark matter: its thermal conductivity (K), its slow neutrino emissivity (ε_v approx= Q_vT_9~8), and the energy released by converting a nucleon into strange quark matter (Q_(SQM)).
机译:积聚中子星上的碳点火的最新模型预测超爆点火深度比观察到的大一个。我们探索了这个问题的可能解决方案,即低质量X射线双星中的紧凑恒星实际上显示出爆发,实际上是具有正常物质壳的奇怪恒星。我们计算了奇异恒星上超爆发的性质,以及对奇异夸克物质性质的最终约束。我们表明,观察到的着火条件例如通过直接Urca过程排除了夸克核中的快速中微子发射,这意味着恒星密度下的奇怪夸克物质应处于颜色超导状态。对于夸克物质核中缓慢的中微子发射,我们发现再现超爆发性质需要在奇夸克物质的三个不良约束性质之间建立明确的关系:其导热系数(K),其缓慢的中微子发射率(ε_vrox= Q_vT_9〜8),以及通过将一个核子转换为奇夸克物质(Q_(SQM))释放的能量。

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