论文标题
从重力波发射中推断出核心偏离超新星的天体物理参数
Inferring Astrophysical Parameters of Core-Collapse Supernovae from their Gravitational-Wave Emission
论文作者
论文摘要
附近的核心偏斜超新星(CCSNE)是引力波,中微子和电磁望远镜的强大多通信源,因为它们在理想的频带中发射重力波,用于基于地面的探测器。一旦检测到CCSN重力波信号,我们将需要确定信号的参数,并了解这些参数如何与源的爆炸,祖细胞和残余特性相关。由于CCSN爆炸的随机性质,这是一个挑战,该爆炸的随机性质印在其时间序列引力波形上。在本文中,我们使用不对称的Chirplet信号模型对CCSN信号进行了贝叶斯参数估计,以表示在CCSN重力波信号频谱图中观察到的主要高频模式。我们使用设计灵敏度的高级LIGO噪声和CCSN波形来自四个不同的流体动力超新星模拟,并具有一系列不同的祖细胞。我们确定模型可以重建发射模式的时间频率图像,并显示我们如何确定信号参数(例如频率,振幅和持续时间)的能力。我们展示了信号模型的参数如何使我们能够将约束放置在原始的恒星质量和半径上,湍流动能到proto-neutron Star上,以及冲击复兴的时间。
Nearby core-collapse supernovae (CCSNe) are powerful multi-messenger sources for gravitational-wave, neutrino and electromagnetic telescopes as they emit gravitational waves in the ideal frequency band for ground based detectors. Once a CCSN gravitational-wave signal is detected, we will need to determine the parameters of the signal, and understand how those parameters relate to the source's explosion, progenitor and remnant properties. This is a challenge due to the stochastic nature of CCSN explosions, which is imprinted on their time series gravitational waveforms. In this paper, we perform Bayesian parameter estimation of CCSN signals using an asymmetric chirplet signal model to represent the dominant high-frequency mode observed in spectrograms of CCSN gravitational-wave signals. We use design sensitivity Advanced LIGO noise and CCSN waveforms from four different hydrodynamical supernova simulations with a range of different progenitor stars. We determine how well our model can reconstruct time-frequency images of the emission modes, and show how well we can determine parameters of the signal such as the frequency, amplitude, and duration. We show how the parameters of our signal model may allow us to place constraints on the proto-neutron star mass and radius, the turbulent kinetic energy onto the proto-neutron star, and the time of shock revival.