论文标题

混合恒星中的不连续性重力模式:评估快速和缓慢转化的作用

Discontinuity gravity modes in hybrid stars: assessing the role of rapid and slow phase conversions

论文作者

Tonetto, L., Lugones, G.

论文摘要

当恒星内部存在急剧的密度跳跃时,不连续性的重力模式可能会出现在干扰的夸克 - 戴隆杂种恒星中,并且是推断紧凑型物体中夸克物质岩心存在的潜在指纹。当混合恒星受到干扰时,转化反应可能在夸克 - 戴隆界面上发生,并且在全局恒星属性(例如动态稳定性和准正常模式频谱)中可能具有关键作用。在这项工作中,我们研究了界面转化率的作用。为此,我们首先得出在缓慢和快速转化的情况下,在非放射性扰动杂交恒星的尖锐界面处的连接条件。然后,我们在两种情况下都分析了不连续性$ g $ mode。对于快速转换,不连续性$ g $ mode的频率为零,因为相位分裂表面附近的流体流体元件几乎立即调节其成分,而重力无法提供浮力。对于缓慢的转换,存在$ g $ mmode,并在此使用现代的HADRONIC和QUARK方程在此分析其属性。此外,最近已经显示,在缓慢转换的情况下,出现了稳定的混合配置的扩展分支,$ \ partial m/ \ partialε_c<0 $。我们表明,标准分支的$ g $ modes(即,$ \ partial m/ \partialε_c> 0 $的$ g $ modes具有频率和阻尼时间,与文献中先前的结果一致。但是,扩展分支的$ g $ modes具有明显较大的频率(在$ 1-2 \,\ mathrm {kHz} $的范围内)和较短的阻尼时间(在某些情况下几秒钟)。我们讨论了$ g $ mmode GWS与现在和计划的GW观测值的可检测性。

Discontinuity gravity modes may arise in perturbed quark-hadron hybrid stars when a sharp density jump exists in the stellar interior and are a potential fingerprint to infer the existence of quark matter cores in compact objects. When a hybrid star is perturbed, conversion reactions may occur at the quark-hadron interface and may have a key role in global stellar properties such as the dynamic stability and the quasi-normal mode spectrum. In this work we study the role of the conversion rate at the interface. To this end, we first derive the junction conditions that hold at the sharp interface of a non-radially perturbed hybrid star in the case of slow and rapid conversions. Then, we analyse the discontinuity $g$-mode in both cases. For rapid conversions, the discontinuity $g$-mode has zero frequency because a displaced fluid element near the phase splitting surface adjusts almost immediately its composition to its surroundings and gravity cannot provide a buoyancy force. For slow conversions, a $g$-mode exists and its properties are analysed here using modern hadronic and quark equations of state. Moreover, it has been shown recently that in the case of slow conversions an extended branch of stable hybrid configurations arises for which $\partial M/ \partial ε_c <0$. We show that $g$-modes of the standard branch (that is, the one with $\partial M/ \partial ε_c > 0$) have frequencies and damping times in agreement with previous results in the literature. However, $g$-modes of the extended branch have significantly larger frequencies (in the range $1-2 \, \mathrm{kHz}$) and much shorter damping times (few seconds in some cases). We discuss the detectability of $g$-mode GWs with present and planned GW observatories.

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