论文标题

为什么Hadronic恒星可以用更大的半径转换为奇怪的夸克星星

Why can hadronic stars convert into strange quark stars with larger radii

论文作者

Drago, Alessandro, Pagliara, Giuseppe

论文摘要

紧凑型恒星的总结合能是重力结合能$(BE)_g $和核结合能$(BE)_n $的总和,这是与相互作用的微物理学有关的最后一个。虽然第一个是辐射恒星和奇怪的夸克恒星的正(结合),但第二个是大而较大的,对于雄性恒星(抗固定恒星),而奇怪的夸克恒星的小和负(反结合)或阳性(抗结合)或阳性(结合)。一颗har子恒星可以转换为较大半径的奇怪夸克恒星,因为随之而来的$(be)_g $的减少是由于$(BE)_n $的大幅增长而超过了。因此,由于转化率而增加的总结合能增加,并且该过程是放热的。根据Hadronic物质和夸克物质的状态以及恒星的重质质量的方程式,显然也是可能的,即将Hadronic Stars转换为具有较小的Radii的奇怪夸克恒星,在文献中经常讨论这种情况。我们提供了足够的条件,并且在大多数现象学上相关的情况下,也需要提供一个奇怪的夸克恒星,同时满足放热请求。最后,我们比较了夸克恒星的两种方案(一个具有大夸克恒星,另一个具有小夸克恒星),以及第三户场景,我们讨论了现在和未来的数据如何在它们之间歧视。

The total binding energy of compact stars is the sum of the gravitational binding energy $(BE)_g$ and the nuclear binding energy $(BE)_n$, the last being related to the microphysics of the interactions. While the first is positive (binding) both for hadronic stars and for strange quark stars, the second is large and negative for hadronic stars (anti-binding) and either small and negative (anti-binding) or positive (binding) for strange quark stars. A hadronic star can convert into a strange quark star with a larger radius because the consequent reduction of $(BE)_g$ is over-compensated by the large increase in $(BE)_n$. Thus, the total binding energy increases due to the conversion and the process is exothermic. Depending on the equations of state of hadronic matter and quark matter and on the baryonic mass of the star, the contrary is obviously also possible, namely the conversion of hadronic stars into strange quark stars having smaller radii, a situation more often discussed in the literature. We provide a condition that is sufficient and in most of the phenomenologically relevant cases also necessary in order to form strange quark stars with larger radii while satisfying the exothermicity request. Finally, we compare the two schemes in which quark stars are produced (one having large quark stars and the other having small quark stars) among themselves and with the third-family scenario and we discuss how present and future data can discriminate among them.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源