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Supernova Explosions and the Birth of Neutron Stars

机译:超新星爆炸和中子恒星的诞生

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We report here on recent progress in understanding the birth conditions of neutron stars and the way how supernovae explode. More sophisticated numerical models have led to the discovery of new phenomena in the supernova core, for example a generic hydrodynamic instability of the stagnant supernova shock against low-mode nonradial deformation and the excitation of gravity-wave activity in the surface and core of the nascent neutron star. Both can have supportive or decisive influence on the inauguration of the explosion, the former by improving the conditions for energy deposition by neutrino heating in the postshock gas, the latter by supplying the developing blast with a flux of acoustic power that adds to the energy transfer by neutrinos. While recent two-dimensional models suggest that the neutrino-driven mechanism may be viable for stars from ~8M to at least 15M, acoustic energy input has been advocated as an alternative if neutrino heating fails. Magnetohydrodynamic effects constitute another way to trigger explosions in connection with the collapse of sufficiently rapidly rotating stellar cores, perhaps linked to the birth of magnetars. The global explosion asymmetries seen in the recent simulations offer an explanation of even the highest measured kick velocities of young neutron stars.
机译:我们在此报告最近在理解中子恒星的出生条件以及超新星爆炸方式的进展情况。更复杂的数值模型导致了超新星核心中的新现象的发现,例如,对低模式非抗体变形的停滞超新闻冲击的通用流体动力不稳定性以及加入的表面和核心的重力波活动的激发中子星。两者都可以对爆炸的就职典礼来说,通过改善邮袋气体中的中型加热的能量沉积条件,通过供应发育爆炸,通过增加能量转移的声电量来改善能量沉积的条件由Neutrinos。虽然最近的二维模型表明,对于从〜8m至至少15m的恒星可以是可行的中微子驱动的机构,如果中央加热失败,则声能输入被提倡作为替代方案。磁力流体动力学效应构成了一种触发与充分迅速旋转的恒星核心的崩溃的爆炸的另一种方法,也许与磁场的诞生有关。最近的模拟中看到的全球爆炸不对称提供了甚至是年轻中子恒星的最高测量踢速度的解释。

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