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Coulomb corrections to the equation of state of nuclear statistical equilibrium matter: implications for SNIa nucleosynthesis and the accretion-induced collapse of white dwarfs

机译:对核统计平衡物质状态方程的库仑修正:对sNIa核合成的影响以及白矮星的吸积诱导崩溃

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摘要

Coulomb corrections to the equation of state of degenerate matter are usually neglected in high-temperature regimes, owing to the inverse dependence of the plasma coupling constant, G, on temperature. However, nuclear statistical equilibrium matter is characterized by a large abundance by mass of large-Z (iron group) nuclei. It is found that Coulomb corrections to the ion ideal gas equation of state of matter in nuclear statistical equilibrium are important at temperatures T≲5–10×109 K and densities ρ≳108 g cm−3. At a temperature T=8.5×109 K and a density ρ=8×109 g cm−3, the neutronization rate is larger by ≳28 per cent when Coulomb corrections are included. However, the conductive velocity of a thermonuclear deflagration wave in C-O drops by ∼16 per cent when Coulomb corrections to the heat capacity are taken into account. The implications for SNIa models and nucleosynthesis, and also for the accretion-induced collapse of white dwarfs, are discussed. Particularly relevant is the result that the minimum density for collapse of a white dwarf to a neutron star is shifted down to 5.5–6×109 g cm−3, a value substantially lower than previously thought.
机译:由于等离子体耦合常数G与温度成反比关系,因此在高温状态下通常忽略对简并物状态方程的库仑校正。但是,核统计平衡物质的特征是大Z原子(铁基团)核的质量大。发现在温度T≲5–10×109 K和密度ρ≳108g cm-3时,核统计平衡中离子理想气体状态方程的库仑校正非常重要。在温度T = 8.5×109 K且密度ρ= 8×109 g cm-3的情况下,当包括库仑校正时,中和率提高了≳28%。但是,考虑到热容量的库仑校正,C-O中热核爆燃波的传导速度下降了约16%。讨论了对SNIa模型和核合成,以及对增生引起的白矮星崩溃的影响。特别有意义的结果是,白矮星崩塌到中子星的最小密度降低到5.5–6×109 g cm-3,大大低于以前的预期。

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