论文标题

用重力波确定旋转巨大恒星芯的结构

Determining the Structure of Rotating Massive Stellar Cores with Gravitational Waves

论文作者

Pajkos, Michael A., Warren, MacKenzie L., Couch, Sean M., O'Connor, Evan P., Pan, Kuo-Chuan

论文摘要

由恒星核心崩溃产生的引力波(GW)信号编码有关祖细胞恒星物理参数和所得的核心偏移超新星(CCSN)的大量信息。我们提出了一种新的方法,可以使用GW信号的两个最可检测到的部分来约束CCSN祖细胞的特性:核心弹跳信号和从Protoneutron Star中显性频率模式的演变。我们专注于核心反弹后的时期,但在爆炸之前,并研究了GWS从旋转CCSNE到约束祖细胞恒星特性的预测能力。我们分析了不同初始质量和旋转速率的祖细胞中恒星核心崩溃的34个2D和四个3D中性氧化式融合动力学模拟。为了扩展以前的工作,我们验证了倒塌时祖细胞的紧凑性,以与早期升起的斜率以及在旋转情况下以及核心角动量相关。将这些信息与弹跳信号相结合,我们提出了一种新的分析方法,以限制祖细胞的崩溃前核心紧凑性。由于这些GW的特征发生在核心反弹后不到一秒钟,因此该分析可以使天文学家甚至在冲击突破之前就可以预测所得CCSN的电磁特性。

The gravitational wave (GW) signal resulting from stellar core collapse encodes a wealth of information about the physical parameters of the progenitor star and the resulting core-collapse supernova (CCSN). We present a novel approach to constrain CCSN progenitor properties at collapse using two of the most detectable parts of the GW signal: the core-bounce signal and evolution of the dominant frequency mode from the protoneutron star. We focus on the period after core bounce but before explosion and investigate the predictive power of GWs from rotating CCSNe to constrain properties of the progenitor star. We analyze 34 2D and four 3D neutrinoradiation-hydrodynamic simulations of stellar core collapse in progenitors of varied initial mass and rotation rate. Extending previous work, we verify the compactness of the progenitor at collapse to correlate with the early ramp-up slope, and in rotating cases, also with the core angular momentum. Combining this information with the bounce signal, we present a new analysis method to constrain the pre-collapse core compactness of the progenitor. Because these GW features occur less than a second after core bounce, this analysis could allow astronomers to predict electromagnetic properties of a resulting CCSN even before shock breakout.

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