论文标题
核心偏转超新星中一阶量子染色体动力学相变的重力波签名
Gravitational-wave Signature of a First-order Quantum Chromodynamics Phase Transition in Core-Collapse Supernovae
论文作者
论文摘要
一阶量子染色体动力学(QCD)相变(PT)可能发生在由核心偏曲超新星(CCSN)产生的原反面恒星(PC)中。在这项工作中,我们研究了具有轴对称流体动力学模拟的非旋转CCSN中这种PT的后果。我们发现PT导致PC的崩溃,并导致大声的引力波(GWS)。该GW爆发的幅度为$ \ sim30 $倍,比通常发现的非旋转CCSN的跳后GW信号大。它在频谱中显示了高频($ \ sim2500-4000 $ hz)的广泛峰值,其持续时间为$ \ lysSim5 {\ rm MS} $,并且携带$ \ sim3 $的能量比其他情节高。同样,PCS振荡的峰值频率在PT诱导的崩溃后大大增加。除了第二个中微子爆发外,如果由基于地面的GW检测器检测到GW信号,则是CCSNE内一阶QCD PT的决定性证据,并提供有关PCS结构和动力学的关键信息。
A first-order quantum chromodynamics (QCD) phase transition (PT) may take place in the protocompact star (PCS) produced by a core-collapse supernova (CCSN). In this work, we study the consequences of such a PT in a non-rotating CCSN with axisymmetric hydrodynamic simulations. We find that the PT leads to the collapse of the PCS and results in a loud burst of gravitational waves (GWs). The amplitude of this GW burst is $\sim30$ times larger than the post-bounce GW signal normally found for non-rotating CCSN. It shows a broad peak at high frequencies ($\sim2500-4000$ Hz) in the spectrum, has a duration of $\lesssim5 {\rm ms}$, and carries $\sim3$ orders of magnitude more energy than the other episodes. Also, the peak frequency of the PCS oscillation increases dramatically after the PT-induced collapse. In addition to a second neutrino burst, the GW signal, if detected by the ground-based GW detectors, is decisive evidence of the first-order QCD PT inside CCSNe and provides key information about the structure and dynamics of the PCS.