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首页> 外文期刊>The Astrophysical journal >ONE-ARMED SPIRAL INSTABILITY IN A LOW-T/|W| POSTBOUNCE SUPERNOVA GORE
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ONE-ARMED SPIRAL INSTABILITY IN A LOW-T/|W| POSTBOUNCE SUPERNOVA GORE

机译:低T / | W |中的单臂螺旋不稳定弹跳后超新星

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摘要

A three-dimensional, Newtonian hydrodynamic technique is used to follow the postbounce phase of a stellar core collapse event. For realistic initial data, we have employed post-core-bounce snapshots of the iron core of a 20 solar mass star. The models exhibit strong differential rotation but have centrally condensed density stratifications. We demonstrate for the first time that such postbounce cores are subject to a so-called low-T/|W| nonaxisymmetric instability and, in particular, can become dynamically unstable to an (m = 1)-dominated spiral mode at T/|W| ~ 0.08. We calculate the gravitational wave (GW) emission by the instability and find that the emitted waves may be detectable by current and future GW observatories from anywhere in the Milky Way.
机译:三维牛顿流体动力学技术用于跟踪恒星核心塌陷事件的反弹后阶段。对于真实的初始数据,我们采用了20个太阳质量恒星的铁核的核后反弹快照。这些模型显示出强烈的差动旋转,但具有集中的密度分层。我们首次证明了这种反弹后磁芯会受到所谓的低T / | W |的影响。非轴对称不稳定性,特别是在T / | W |时对于(m = 1)主导的螺旋模态会变得动态不稳定。 〜0.08。我们通过不稳定性计算引力波(GW)发射,发现发射的波可能被银河系任何地方的当前和未来GW观测站探测到。

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