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首页> 外文期刊>The Astrophysical journal >Neutrino Transport with Monte Carlo Method. I. Toward Fully Consistent Implementation of Nucleon Recoils in Core-collapse Supernova Simulations
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Neutrino Transport with Monte Carlo Method. I. Toward Fully Consistent Implementation of Nucleon Recoils in Core-collapse Supernova Simulations

机译:中微子运输与蒙特卡罗方法。 I.在核心崩溃超新星仿真中完全一致地实现核仁反冲

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The small energy exchange via nucleon recoils in neutrino–nucleon scattering is now supposed to be one of the important factors for successful explosions of core-collapse supernovae (CCSNe), as they can change neutrino spectra through accumulation of a large number of scatterings. In deterministic methods employed for neutrino transport in CCSN simulations, we normally cannot afford to deploy a large enough number of energy bins needed to resolve this small energy exchange, and subgrid techniques are employed one way or another. In this paper, we study quantitatively with the Monte Carlo (MC) method how well such a treatment performs. We first investigate the effects of nucleon recoils on the neutrino spectra and confirm that the average energy is reduced by ~15% for heavy-lepton neutrinos and much smaller amounts for other types of neutrinos in a typical postbounce situation. It is also observed that the nucleon scattering dominates the electron scattering in the thermalization of neutrino spectra in all flavors. We then study possible artifacts that the coarse energy grid may produce in the deterministic methods. In order to mimic the latter calculation, we redistribute MC particles in each energy bin after a certain interval in a couple of ways and study how the results are affected, depending on the energy resolution. We also discuss the possible implications of our results for the deterministic methods.
机译:通过中核 - 核子散射中的核仁反冲的小能量交换现在应该是成功爆炸核心塌陷超新世界(CCSNE)的重要因素之一,因为它们可以通过大量散射的积累来改变中性谱。在CCSN仿真中用于中微子运输的确定性方法中,我们通常不能支配足够数量的能量箱,以解决这种小型能量交换,并且划分技术是一种方式或另一种方式。在本文中,我们用蒙特卡罗(MC)方法定量地研究了这种治疗的处理程度。我们首先探讨核仁反冲在中微子光谱上的影响,并确认重型Lepton Neutrinos的平均能量降低〜15%,在典型的矛盾情况下为其他类型的中微子组较少。还观察到核子散射在所有口味中占据了中微子光谱的热化中的电子散射。然后,我们研究了粗能电网可以在确定性方法中产生的可能性。为了模仿后一计算,我们在几种方式的一定间隔之后重新分配MC粒子,并根据能量分辨率研究结果如何受到影响。我们还讨论了我们对确定性方法结果的可能影响。

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