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首页> 外文期刊>The Astrophysical journal >THE MOMENT OF INERTIA OF THE BINARY PULSAR J0737-3039A: CONSTRAINING THE NUCLEAR EQUATION OF STATE
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THE MOMENT OF INERTIA OF THE BINARY PULSAR J0737-3039A: CONSTRAINING THE NUCLEAR EQUATION OF STATE

机译:二元脉冲J0737-3039A的惯性矩:约束状态的核方程

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摘要

We construct numerical models of the newly discovered binary pulsar J0737—3039A, both with a fully relativistic, uniformly rotating equilibrium code that handles arbitrary spins and in the relativistic slow-rotation approx < imation. We compare results for a representative sample of viable nuclear equations of state (EOSs) that span three qualitatively different classes of models for the description of nuclear matter. A future dynamical measurement of the neutron star's moment of inertia from pulsar timing data will impose significant constraints on the nuclear EOS. Even a moderately accurate measurement (approx < 10%) may be able to rule out some of these competing classes. Using the measured mass, spin, and moment of inertia to identify the optimal model computed from different EOSs, one can determine the pulsar's radius.
机译:我们构建了新发现的二进制脉冲星J0737-3039A的数值模型,它们均具有可处理任意自旋的完全相对论的,均匀旋转的平衡代码,并且具有相对论的慢速旋转近似。我们比较了涵盖三个定性不同类别的核物质描述模型的有生命力的状态方程(EOS)的代表性样本的结果。未来从脉冲星定时数据对中子星转动惯量的动力学测量将对核EOS施加重大限制。即使是中等准确的测量(大约<10%)也可以排除其中一些竞争类。使用测得的质量,自旋和惯性矩来确定根据不同EOS计算出的最佳模型,就可以确定脉冲星的半径。

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