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首页> 外文期刊>The Astrophysical journal >PARTICLE MESH SIMULATIONS OF THE Lyα FOREST AND THE SIGNATURE OF BARYON ACOUSTIC OSCILLATIONS IN THE INTERGALACTIC MEDIUM
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PARTICLE MESH SIMULATIONS OF THE Lyα FOREST AND THE SIGNATURE OF BARYON ACOUSTIC OSCILLATIONS IN THE INTERGALACTIC MEDIUM

机译:星际介质中Lyα森林的颗粒网状模拟和巴利翁声振荡的特征

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摘要

We present a set of ultra-large particle-mesh simulations of the Lyα forest targeted at understanding the imprint of baryon acoustic oscillations in the inter-galactic medium. We use nine dark matter only simulations which can, for the first time, simultaneously resolve the Jeans scale of the intergalactic gas while covering the large volumes required to adequately sample the acoustic feature. Mock absorption spectra are generated using the fluctuating Gunn-Peterson approximation which have approximately correct flux probability density functions and small-scale power spectra. On larger scales, there is clear evidence in the redshift-space correlation function for an acoustic feature, which matches a linear theory template with constant bias. These spectra, which we make publicly available, can be used to test pipelines, plan future experiments, and model various physical effects. As an illustration, we discuss the basic properties of the acoustic signal in the forest, the scaling of errors with noise and source number density, modified statistics to treat mean flux evolution and mis-estimation, and non-gravitational sources such as fluctuations in the photoionizing background and temperature fluctuations due to He II reionization.
机译:我们提出了一组Lyα森林的超大型颗粒网模拟,旨在了解银河系间介质中重子声振荡的印记。我们使用了9个仅暗物质的模拟,这可以首次同时解析星系间气体的Jeans规模,同时涵盖了对声学特征进行充分采样所需的大体积。使用波动的Gunn-Peterson近似生成模拟吸收光谱,该近似具有正确的通量概率密度函数和小规模功率谱。在更大的尺度上,在声学特征的红移空间相关函数中有明显的证据,该函数与具有恒定偏差的线性理论模板匹配。我们公开提供的这些光谱可用于测试管道,计划未来的实验以及对各种物理效应进行建模。作为说明,我们讨论了森林中声信号的基本属性,噪声和源数密度的误差缩放,处理平均通量演变和估计错误的经修改的统计信息以及非引力源,例如森林中的波动。 He II离子化导致的光电离背景和温度波动。

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