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Solving the 3 + 1 GRMHD Equations in the eXtended Conformally Flat Condition: the XNS Code for Magnetized Neutron Stars

机译:在扩展的延长形式平面条件下解决3 + 1 GRMHD方程:磁化中子恒星的XNS代码

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High-energy phenomena in astrophysics involve quite generally a combination of relativistic motions and strong gravity. The simultaneous solution of Einstein equations and General Relativistic MHD equations is thus necessary to model with accuracy such phenomena. The so-called Conformally Flat Condition (CFC) allows a simplified treatment of Einstein equations, that can be particularly efficient in those contexts where gravitational wave emission is negligible, like core-collapse, or the formation/evolution of neutron stars. We have developed a set of codes to model axisymmetric MHD flows, in General Relativity, where the solution of Einstein equations is achieved with a semi-spectral scheme. Here, we will show how this framework is particularly well suited to investigate neutron star equilibrium models in the presence of strong magnetic fields and we will present the.XNS code, that has been recently developed and here updated to treat poloidal and mixed configurations.
机译:天体物理学中的高能量现象通常涉及相对论运动和强大的组合。因此,需要以精确的这种现象来模拟Einstein方程和通用相对论MHD方程的同时解。所谓的共形扁平条件(CFC)允许Einstein方程的简化处理,这在引力波发射可忽略不计的那些环境中可以特别有效,例如核心塌陷,或中子恒星的形成/演变。我们已经开发了一组代码来模拟轴对称MHD流量,通常是相对性,其中通过半光谱方案实现了Einstein方程的解决方案。在这里,我们将展示该框架在强大的磁场存在下调查中子星均衡模型特别适合于调查中子星均衡模型,我们将介绍最近开发的,此处更新以治疗面色和混合配置。

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