论文标题

使用核心折叠超新星的1D模拟在N = 50区域中电子捕获率的比较

Comparison of Electron Capture Rates in the N=50 Region using 1D Simulations of Core-collapse Supernovae

论文作者

Johnston, Zac, Wasik, Sheldon, Titus, Rachel, Warren, MacKenzie L., O'Connor, Evan P., Zegers, Remco, Couch, Sean M.

论文摘要

最近的研究强调了核心折叠超新星(CCSNE)模型对n = 50封闭壳区域附近中子核的电子捕获率(EC)速率的敏感性。在这项工作中,我们使用该地区最近更新的EC速率对200个恒星祖细胞进行了一大型的一维CCSN模拟。为了进行比较,我们使用两个先前的EC速率实现重复模拟:一个具有参数化n = 50速率(LMP)的微物理库和一个较旧的独立粒子近似(IPA)。我们通过冲击复兴在弹跳后长达几秒钟遵循模拟,并表明EC速率对CCSN特性产生一致的烙印,通常超过祖细胞本身的作用。值得注意的影响包括核心崩溃的时间尺度,弹跳时内核的电子分数和质量,通过冲击的吸积率,复兴的成功或失败以及中央紧凑型残余的特性。我们还比较了沙丘样检测器中中子爆发的可观察到的中微子信号,并发现对计数和平均能量的一致影响。总体而言,更新的费率导致了LMP和IPA之间中间的属性,但比两者都更有利于爆炸。

Recent studies have highlighted the sensitivity of core-collapse supernovae (CCSNe) models to electron-capture (EC) rates on neutron-rich nuclei near the N=50 closed-shell region. In this work, we perform a large suite of one-dimensional CCSN simulations for 200 stellar progenitors using recently updated EC rates in this region. For comparison, we repeat the simulations using two previous implementations of EC rates: a microphysical library with parameterized N=50 rates (LMP), and an older independent-particle approximation (IPA). We follow the simulations through shock revival up to several seconds post-bounce, and show that the EC rates produce a consistent imprint on CCSN properties, often surpassing the role of the progenitor itself. Notable impacts include the timescale of core collapse, the electron fraction and mass of the inner core at bounce, the accretion rate through the shock, the success or failure of revival, and the properties of the central compact remnant. We also compare the observable neutrino signal of the neutronization burst in a DUNE-like detector, and find consistent impacts on the counts and mean energies. Overall, the updated rates result in properties that are intermediate between LMP and IPA, and yet slightly more favorable to explosion than both.

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