We present results from simulations of core-collapse supernovae in FLASH using a newly-implemented multidimensional neutrino transport scheme and a newly-implemented general relativistic (GR) treatment of gravity. We use a two-moment method with an analytic closure (so-called M1 transport) for the neutrino transport. This transport is multienergy, multispecies, velocity-dependent and truly multidimensional, i.e., we do not assume the commonly used "ray-by-ray" approximation. Our GR gravity is implemented in our Newtonian hydrodynamics simulations via an effective relativistic potential (GREP) that closely reproduces the GR structure of neutron stars and has been shown to match GR simulations of core collapse quite well. In axisymmetry, we simulate core-collapse supernovae with four different progenitor models in both Newtonian and GR gravity. We find that the more compact protoneutron star structure realized in simulations with GR gravity gives higher neutrino luminosities and higher neutrino energies. These differences in turn give higher neutrino heating rates (upwards of $\sim$20-30% over the corresponding Newtonian gravity simulations) that increase the efficacy of the neutrino mechanism. Three of the four models successfully explode in the simulations assuming GREP gravity. In our Newtonian gravity simulations, two of the four models explode, but at times much later than observed in our GR gravity simulations. Our results, both in Newtonian and GR gravity, compare well with several other studies in the literature. These results conclusively show that the approximation of Newtonian gravity for simulating the core-collapse supernova central engine is not acceptable. We also simulate four additional models in GR gravity to highlight the growing disparity between parameterized 1D models of core-collapse supernovae and the current generation of 2D models.
翻译:我们展示的是FLASH中核心折叠超新星的模拟结果, 模拟时使用了新实施的多维中微子运程和新实施的普通相对论重力处理方法。 我们使用一种两分钟方法, 分析封闭( 所谓的M1运输) 来模拟中微子运输。 这种运输是多种能源、 多种物种、 速度依赖和真正多维的超新星。 我们不假定常用的“ 逐射” 近似。 我们的GR重力在新通水流动力学模拟中实施。 我们的GR重力在新通重力2级中实施。 严格复制中子星的GR结构, 并显示与核心崩溃的G1号磁力模拟。 在轨中, 核心的中子断裂变后, 我们的内流变电流变电流机机变异变后, 我们的内数级变电磁力变速数在4个数中, 这些变速机变速的内, 内数个内变速变速变数的内, 这些变速机变速机变数的内, 这些变数的内变数的内变速机变数机变数, 这些变数的内, 变数的内, 变数的内变数的内变数的内变数的内变数的内变数的内变数的内变数的内变数的内变数的内变数, 变数的内变数的内变数机变数, 这些变数的内变数的内变数, 变数的内变数的内变数的内变数机变数机变数机变数机变数机变数的内变数机变数机变数机变器变数, 变器变数的内变数的内变数机变数机变数机变数的内变数, 变数的内变数机变数机变数机变数机变数机变数变数机变数的内变数的内变数机变数的内变数的内变数的内变数, 变数的内变数的内变数的内变数变数的内变数的内变数的内变数, 变数的内变数的内变