论文标题
模拟中子星中的散装粘度。 I.形式主义
Simulating bulk viscosity in neutron stars. I. Formalism
论文作者
论文摘要
忠实地包含化学反应引起的散装粘度的影响是模拟核心 - 循环超新星,二进制中子星星合并和中子星星振荡的一个重要问题,在这种情况下,粒子丰度被稀有和压缩流体元素从化学平衡中局部推出。在这项工作中,我们讨论了三种不同的方法,可以用来在中子星的一般相对论水动力学模拟中实现大量粘度:确切的多组分反应流体和两种müller-israel-stewart理论,即第二阶Hiscock-lindblom模型及其线性线性模型及其线性限制,Maxwell-Cattaneo模型。在讨论了三种方法背后的理论之后,我们将它们的动力学方程式用于径向仪表切片(即Schwarzschild)坐标中的球形对称性。我们还讨论了流体状态和相关中微子排放速率方程的特定选择,这些选择在伴侣论文中用于三个框架的数值比较,我们在非线性方案中获得了HISCOCK-LINDBLOM理论的有效音速。
The faithful inclusion of the effects of bulk viscosity induced by the presence of chemical reactions is an important issue for simulations of core-collapse supernovae, binary neutron star mergers, and neutron star oscillations, where particle abundances are locally pushed out of chemical equilibrium by rarefaction and compression of the fluid elements. In this work, we discuss three different approaches that can be used to implement bulk viscosity in general relativistic hydrodynamic simulations of neutron stars: the exact multi-component reacting fluid, and two Müller-Israel-Stewart theories, namely the second order Hiscock-Lindblom model and its linear limit, the Maxwell-Cattaneo model. After discussing the theory behind the three approaches, we specialize their dynamics equations to spherical symmetry in the radial gauge-polar slicing (i.e., Schwarzschild) coordinates. We also discuss a particular choice for the equation of state of the fluid and the associated neutrino emission rates, which are used in a companion paper for the numerical comparison of the three frameworks, and we obtain the effective sound speed for the Hiscock-Lindblom theory in the non-linear regime.