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Relativistic calculations of coalescing binary neutron stars

机译:合并二元中子星的相对论计算

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We have designed and tested a new relativistic Lagrangian hydrodynamics code, which treats gravity in the conformally flat approximation to general relativity. We have tested the resulting code extensively, finding that it performs well for calculations of equilibrium single-star models, collapsing relativistic dust clouds, and quasi-circular orbits of equilibrium solutions. By adding a radiation reaction treatment, we compute the full evolution of a coalescing binary neutron star system. We find that the amount of mass ejected from the system, much less than a per cent, is greatly reduced by the inclusion of relativistic gravitation. The gravity wave energy spectrum shows a clear divergence away from the Newtonian point-mass form, consistent with the form derived from relativistic quasi-equilibrium fluid sequences.
机译:我们已经设计并测试了新的相对论拉格朗日流体力学代码,该代码以相对于广义相对论的保形平坦近似处理重力。我们已经对生成的代码进行了广泛的测试,发现它在计算平衡单星模型,塌缩相对论尘埃云和平衡解的拟圆形轨道方面表现良好。通过添加辐射反应处理,我们可以计算聚结双星中子星系统的完整演化。我们发现,由于包含了相对论引力,大大减少了从系统中喷出的质量的数量,远远少于百分之一。重力波能谱显示出与牛顿点质形式明显的偏离,这与从相对论拟平衡流体序列导出的形式一致。

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