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General Relativistic Explosion Models of Core-Collapse Supernovae

机译:核心塌陷超新星的一般相对论爆炸模型

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We present results from the first generation of multi-dimensional general relativistic neutrino hydrodynamics simulations of core-collapse supernovae. A comparison with models computed using either the purely Newtonian approximation or the "effective gravitational potential" approach reveals appreciable quantitative differences in the heating conditions and the gravitational wave spectra. Our results underscore the important role of general relativity in the supernova problem (which appears to be on par with other important factors such as the dimensionality and the equation of state) both for our understanding of the explosion dynamics as well as for predictions of observable signatures.
机译:我们提出了第一代多维通用相对论中微氨基水动力学模拟的核心塌陷超胃系。与使用纯牛顿近似或“有效重力电位”方法计算的模型的比较揭示了加热条件和重力波光谱中的明显定量差异。我们的结果强调了一般相对性在超新星问题中的重要作用(这似乎与其他重要因素(如典礼等方程)有关我们对爆炸动力学的理解以及可观察签名的预测。

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