论文标题

热中子星和普遍关系的热力学

Thermodynamics of Hot Neutron Stars and Universal Relations

论文作者

Laskos-Patkos, P., Koliogiannis, P. S., Kanakis-Pegios, A., Moustakidis, Ch. C.

论文摘要

在过去的几年中,对二元中子星系的重力波的检测重新激发了我们对超强物质未知本质的更深入了解的希望。特别是,使用一组通用关系,可以将中子恒星潮汐变形性的引力波约束转化为几个中子星特性的约束。除了二进制中子恒星合并,超新星爆炸也是检测多中电学信号的重要候选者。这样的观察结果可能使我们能够对中子星的结合能施加重大约束。本研究的目的是双重的。首先,我们研究了有限国家与既定的普遍关系的有限温度方程的协议。其次,我们研究了结合能与无量纲潮汐变形性之间的普遍关系的可能存在,这些变形性是连接到多中电学信号的最有希望源的批量特性。我们发现状态热方程并不总是与公认的普遍关系兼容。因此,使用这种表达式探测一般相对论或对中子星体的结构施加约束将是不确定的(当存在热效应时)。此外,我们表明结合能和无量纲的潮汐变形性至少对于中等中子星形质量而言表现出通用趋势。后者允许我们使用GW170817事件的数据对1.4 $ M_ \ odot $中子星的绑定能量设置界限。最后,我们提供了中性星的紧凑性,结合能量和无量纲潮汐变形性之间的关系,这对于冷和热的等质等状态是准确的。

Over the last few years, the detection of gravitational waves from binary neutron star systems has rekindled our hopes for a deeper understanding of the unknown nature of ultradense matter. In particular, gravitational wave constraints on the tidal deformability of a neutron star can be translated into constraints on several neutron star properties using a set of universal relations. Apart from binary neutron star mergers, supernova explosions are also important candidates for the detection of multimessenger signals. Such observations may allow us to impose significant constraints on the binding energy of neutron stars. The purpose of the present study is twofold. Firstly, we investigate the agreement of finite temperature equations of state with established universal relations. Secondly, we examine the possible existence of a universal relation between the binding energy and the dimensionless tidal deformability, which are the bulk properties connected to the most promising sources for multimessenger signals. We find that hot equations of state are not always compatible with accepted universal relations. Therefore, the use of such expressions for probing general relativity or imposing constraints on the structure of neutron stars would be inconclusive (when thermal effects are present). Additionally, we show that the binding energy and the dimensionless tidal deformability exhibit a universal trend at least for moderate neutron star masses. The latter allows us to set bounds on the binding energy of a 1.4 $M_\odot$ neutron star using data from the GW170817 event. Finally, we provide a relation between the compactness, the binding energy and the dimensionless tidal deformability of a neutron star that is accurate for cold and hot isentropic equations of state.

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