论文标题

旋转星星的拉格朗日结构

A Lagrangian construction of rotating stars

论文作者

Ogata, Misa, Okawa, Hirotada, Fujisawa, Kotaro, Yasutake, Nobutoshi, Yamamoto, Yu, Yamada, Shoichi

论文摘要

我们提出了一种新的公式,用于在两个空间尺寸中获得旋转恒星的轴对称平衡结构。为了将其应用于旋转恒星的世俗演化,我们将其基于拉格朗日描述,即,我们求解了力平衡方程,以找到具有质量,特定熵和角动量的流体元件的空间位置。通过有限差异来获得的非线性方程系统通过W4方法求解基本方程,这是我们自己设计的一种新的多维根找到方案。我们通过重新映射方案对其进行增强,以避免对拉格朗日坐标的扭曲。在一系列论文中的第一篇论文中,我们最初将对这些方法进行详细描述。然后,我们介绍一些测试计算的结果,其中包括构建快速旋转的正压和斜压态。我们用一些诊断量进行定量评估它们的精度,并通过与用欧拉代码获得的对应物进行比较。出于示范目的,我们将代码应用于旋转白矮人的玩具模式冷却计算。

We present a new formulation for numerically obtaining axisymmetric equilibrium structures of rotating stars in two spatial dimensions. With a view to apply it to the secular evolution of rotating stars, we base it on the Lagrangian description, i.e., we solve the force-balance equations to find the spatial positions of fluid elements endowed individually with a mass, specific entropy and angular momentum. The system of nonlinear equations obtained by finite-differencing the basic equations are solved with the W4 method, which is a new multi-dimensional root-finding scheme of our own devising. We augment it with a remapping scheme to avoid distortions of the Lagrangian coordinates. In this first one of a series of papers, we will give a detailed description of these methods initially. We then present the results of some test calculations, which include the construction of both rapidly rotating barotropic and baroclinic equilibrium states. We gauge their accuracies quantitatively with some diagnostic quantities as well as via comparisons with the counterparts obtained with an Eulerian code. For a demonstrative purpose, we apply the code to a toy-model cooling calculation of a rotating white dwarf.

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