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A gradient based method for modeling baryons and matter in halos of fast simulations

机译:基于梯度的基于梯度模拟的渐变方法,在快速模拟中的晕圈中

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Fast N-body PM simulations with a small number of time steps such as FastPM or COLA have been remarkably successful in modeling the galaxy statistics, but their lack of small scale force resolution and long time steps cannot give accurate halo matter profiles or matter power spectrum. High resolution N-body simulations can improve on this, but lack baryonic effects, which can only be properly included in hydro simulations. Here we present a scheme to calibrate the fast simulations to mimic the precision of the hydrodynamic simulations or high resolution N-body simulations. The scheme is based on a gradient descent of either effective gravitational potential, which mimics the short range force, or of effective enthalpy, which mimics gas hydrodynamics and feedback. The scheme is fast and differentiable, and can be incorporated as a post-processing step into any simulation. It gives very good results for the matter power spectrum for several of the baryonic feedback and dark matter simulations, and also gives improved dark matter halo profiles. The scheme is even able to find the large subhalos, and increase the correlation coe?cient between the fast simulations and the high resolution N-body or hydro simulations. It can also be used to add baryonic effects to the high resolution N-body simulations. While the method has free parameters that can be calibrated on various simulations, they can also be viewed as astrophysical nuisance parameters describing baryonic effects that can be marginalized over during the data analysis. In this view these parameters can be viewed as an e?cient parametrization of baryonic effects.
机译:快速的n-body pm模拟具有少量时间步骤,如fastpm或cola在建模银河系统计中取得了非常成功,但它们缺乏小规模的力分辨率和长时间步骤不能给出准确的光环物质概况或物质功率谱。高分辨率N体模拟可以改善这一点,但缺乏放静克效应,只能恰当地包含在水力模拟中。在这里,我们提出了一种校准快速模拟以模仿流体动力模拟的精度或高分辨率N体模拟的方案。该方案基于有效重力电位的梯度下降,其模拟短距离力或有效焓,其模拟气体流体动力学和反馈。该方案快速且可微分,并且可以作为后处理步骤结合到任何模拟中。它为几个缩放反馈和暗物质模拟提供了很好的效果功率谱,并且还提供了改进的暗物质晕圈。该方案甚至能够找到大的Subhalos,并在快速模拟和高分辨率N-BOD或水力模拟之间增加相关COE?。它也可用于向高分辨率N体模拟添加缩放效应。虽然该方法具有可在各种仿真上校准的可自由参数,但它们也可以被视为用于在数据分析期间可以在数据分析中被边缘化的缩静电效应的天体物理滋扰参数。在这种观景中,可以将这些参数视为e?Cient参数化的焦音效应。

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