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Stellar electron capture rates on neutron-rich nuclei and their impact on stellar core collapse

机译:Stellar电子捕获速率对中子核的捕获率及其对恒星核心塌陷的影响

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摘要

During the late stages of gravitational core-collapse of massive stars, extreme isospin asymmetries are reached within the core. Due to the lack of microscopic calculations of electron-capture (EC) rates for all relevant nuclei, in general simple analytic parametrizations are employed. We study here several extensions of these parametrizations, allowing for a temperature, electron density, and isospin dependence as well as for odd-even effects. The latter extra degrees of freedom considerably improve the agreement with large-scalemicroscopic rate calculations. We find, in particular, that the isospin dependence leads to a significant reduction of the global EC rates during core collapse with respect to fiducial results, where rates optimized on calculations of stable f_p-shell nuclei are used. Our results indicate that systematic microscopic calculations and experimental measurements in the N ≈ 50 neutron-rich region are desirable for realistic simulations of the core collapse.
机译:在大规模恒星的重力核心崩溃的后期阶段,核心内达到极端的异旋孔不对称。由于对所有相关核的电子捕获(EC)速率缺乏显微镜计算,在一般简单的分析中,使用了简单的分析参数。我们在这里研究了这些参数化的几个延伸,允许温度,电子密度和异旋旋转依赖性以及奇数均匀的效果。后一种额外的自由度大大改善了与大传中的协议进行了改善。特别地,我们发现异端透视依赖性导致在核心崩溃期间相对于基准结果的全球EC率的显着降低,其中使用了对稳定F_P-壳核的计算优化的速率。我们的结果表明,N≈50中子的区域中的系统微观计算和实验测量对于核心塌陷的现实模拟是期望的。

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  • 来源
    《Physical Review C》 |2017年第2017期|025805.1-025805.12|共12页
  • 作者单位

    IFIN-HH Bucharest-Magurele POB-MG6 Romania;

    LPC (CNRS/ENSICAEN/Universite de Caen Normandie) UMR6534 14050 Caen cedex France;

    LUTH CNRS Observatoire de Paris Universite Paris Diderot 5 place Jules Janssen 92195 Meudon France;

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