首页> 外文期刊>The Astrophysical journal >CAPTURING THE FIRE: FLAME ENERGETICS AND NEUTRONIZATION FOR TYPE Ia SUPERNOVA SIMULATIONS
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CAPTURING THE FIRE: FLAME ENERGETICS AND NEUTRONIZATION FOR TYPE Ia SUPERNOVA SIMULATIONS

机译:捕获火灾:Ia型超新星模拟的火焰能和中和

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摘要

We develop and calibrate a realistic model flame for hydrodynamic simulations of deflagrations in white dwarf (Type Ia) supernovae. Our flame model builds on the advection-diffusion-reaction model of Khokhlov and includes electron screening and Coulomb corrections to the equation of state in a self-consistent way. We calibrate this model flame-its energetics and timescales for energy release and neutronization-with self-heating reaction network calculations that include both these Coulomb effects and up-to-date weak interactions. The burned material evolves postflame due to both weak interactions and hydrodynamic changes in density and temperature. We develop a scheme to follow the evolution, including neutronization, of the NSE state subsequent to the passage of the flame front. As a result, our model flame is suitable for deflagration simulations over a wide range of initial central densities and can track the temperature and electron fraction of the burned material through the explosion and into the expansion of the ejecta.
机译:我们开发并校准了逼真的模型火焰,用于对白矮星(Ia型)超新星爆燃进行水动力模拟。我们的火焰模型建立在霍赫洛夫的对流扩散反应模型的基础上,并以自洽的方式对状态方程进行电子筛选和库仑校正。我们使用自热反应网络计算(包括这些库仑效应和最新的弱相互作用)校准此模型的火焰,其能量释放和中和的时间尺度和能量释放和中和。由于弱相互作用以及密度和温度的流体动力学变化,燃烧的材料在燃烧后产生了火焰。我们制定了一个计划,以追踪火焰锋通过后NSE状态的演化,包括中子化。因此,我们的模型火焰适用于在广泛的初始中心密度范围内进行爆燃模拟,并且可以跟踪燃烧的材料的温度和电子百分率,通过爆炸并进入喷射器的膨胀。

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