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Cluster formation and the virial equation of state of low-density nuclear matter

机译:低密度核物质的团簇形成与态态方程

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We present the virial equation of state of low-density nuclear matter composed of neutrons, protons and alpha particles. The virial equation of state is model-independent, and therefore sets a benchmark for all nuclear equations of state at low densities. We calculate the second virial coefficients for nucleon-nucleon, nucleon-alpha and alpha-alpha interactions directly from the relevant binding energies and scattering phase shifts. The virial approach systematically takes into account contributions from bound nuclei and the resonant continuum, and consequently provides a framework to include strong-interaction corrections to nuclear statistical equilibrium models. The virial coefficients are used to make model-independent predictions for a variety of properties of nuclear matter over a range of densities, temperatures and compositions. Our results provide constraints on the physics of the neutrinosphere in supernovae. The resulting alpha particle concentration differs from all equations of state currently used in supernova simulations. Finally, the virial equation of state greatly improves our conceptual understanding of low-density nuclear matter. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们提出了由中子,质子和α粒子组成的低密度核物质状态的病毒式方程。状态状态方程与模型无关,因此为低密度状态下的所有状态方程奠定了基准。我们直接从相关的结合能和散射相移中计算出了核子-核子,核子-α和α-α相互作用的第二病毒系数。病毒学方法系统地考虑了受束缚核和共振连续体的贡献,因此提供了一个框架,包括对核统计平衡模型进行强相互作用校正。病毒系数用于在密度,温度和组成范围内对核物质的各种特性进行模型独立的预测。我们的结果对超新星中微球的物理学提供了限制。产生的α粒子浓度不同于超新星模拟中当前使用的所有状态方程。最后,状态的病毒式方程极大地提高了我们对低密度核物质的概念理解。 (c)2006 Elsevier B.V.保留所有权利。

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