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RELATIVISTIC COLLAPSE AND EXPLOSION OF ROTATING SUPERMASSIVE STARS WITH THERMONUCLEAR EFFECTS

机译:具有热核效应的旋转超大质量恒星的相对论崩溃和爆炸

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We present results of general relativistic simulations of collapsing supermassive stars with and without rotation using the two-dimensional general relativistic numerical code Nada, which solves the Einstein equations written in the BSSN formalism and the general relativistic hydrodynamic equations with high-resolution shock-capturing schemes. These numerical simulations use an equation of state that includes the effects of gas pressure and, in a tabulated form, those associated with radiation and the electron-positron pairs. We also take into account the effect of thermonuclear energy released by hydrogen and helium burning. We find that objects with a mass of ≈5 × 105 M ☉ and an initial metallicity greater than Z CNO ≈ 0.007 do explode if non-rotating, while the threshold metallicity for an explosion is reduced to Z CNO ≈ 0.001 for objects uniformly rotating. The critical initial metallicity for a thermonuclear explosion increases for stars with a mass ≈106 M ☉. For those stars that do not explode, we follow the evolution beyond the phase of black hole (BH) formation. We compute the neutrino energy loss rates due to several processes that may be relevant during the gravitational collapse of these objects. The peak luminosities of neutrinos and antineutrinos of all flavors for models collapsing to a BH are L ν ~ 1055 erg s–1. The total radiated energy in neutrinos varies between E ν ~ 1056 erg for models collapsing to a BH and E ν ~ 1045-1046 erg for models exploding.
机译:我们使用二维广义相对论数字代码Nada展示了具有和不具有自旋的崩溃超大质量恒星的广义相对论模拟的结果,该二维代码使用BSSN形式主义解决了爱因斯坦方程式,并利用高分辨率的震荡捕获方案解决了相对论流体力学方程。这些数值模拟使用状态方程,其中包括气压的影响,以及以表格形式列出的与辐射和电子-正电子对相关的影响。我们还考虑了氢和氦燃烧释放的热核能的影响。我们发现,质量为≈5×105 M objects且初始金属度大于Z CNO≈0.007的物体在不旋转时会发生爆炸,而爆炸的阈值金属性对于均匀旋转的物体会降至Z CNO≈0.001。对于质量≈106M stars的恒星,热核爆炸的临界初始金属度会增加。对于那些不会爆炸的恒星,我们遵循黑洞(BH)形成阶段之外的演化。我们计算了由于这些物体的重力坍塌过程中可能相关的几个过程而导致的中微子能量损失率。崩溃为BH的模型中所有口味的中微子和抗中微子的峰值发光度为Lν〜1055 erg s-1。中子中的总辐射能在坍塌为BH的模型的Eν〜1056 erg与爆炸的模型的Eν〜1045-1046 erg之间变化。

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