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Properties of a relativistic equation of state for collapse-driven supernovae

机译:崩溃驱动超新星的相对论状态方程的性质

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We study characteristics of the relativistic equation of state (EOS) for collapse-driven supernovae, which is derived by relativistic nuclear many body theory. Recently the relativistic EOS table has become available as a new complete set of physical EOS for numerical simulations of supernova explosion. We examine this EOS table by using general relativistic hydrodynamics of the gravitational collapse and bounce of supernova cores. In order to study dense matter in dynamical situation, we perform simplified calculations of core collapse and bounce by following adiabatic collapse with the fixed electron fraction for a series of progenitor models. This is intended to give us "approximate models" of prompt explosion. We investigate the profiles of thermodynamical quantities and the compositions during collapse and bounce. We also perform the calculations with the Lattimer-Swesty EOS to compare the properties of dense matter. As a measure of the stiffness of the EOS, we examine the explosion energy of the prompt explosion with electron capture totally suppressed. We study the derivative of the thermodynamical quantities obtained by the relativistic EOS to discuss the convective condition in neutron-rich environment, which may be important in the delayed explosion. (C) 2003 Elsevier B.V. All rights reserved. [References: 69]
机译:我们研究了由相对论核多体理论推导的崩溃驱动超新星的相对论状态方程(EOS)的特征。最近,相对论性EOS表已作为新的完整物理EOS集合提供,用于超新星爆炸的数值模拟。我们使用超新星核的重力坍塌和弹跳的广义相对论流体力学来检查该EOS表。为了研究动态情况下的致密物质,我们对一系列祖先模型进行了固定电子分数的绝热塌陷,从而简化了核塌陷和弹跳的计算。这旨在为我们提供迅速爆炸的“近似模型”。我们调查崩溃和反弹期间的热力学数量和组成的概况。我们还使用Lattimer-Swesty EOS执行计算以比较稠密物质的性质。作为EOS刚度的量度,我们检查了完全抑制电子捕获的即时爆炸的爆炸能量。我们研究了由相对论性EOS获得的热力学量的导数,以讨论富中子环境中的对流条件,这可能对延迟爆炸很重要。 (C)2003 Elsevier B.V.保留所有权利。 [参考:69]

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