论文标题
通过光谱失真测量值对重的男性反馈的百分比限制
Percent-level constraints on baryonic feedback with spectral distortion measurements
论文作者
论文摘要
单极热的Sunyaev-Zel'Dovich CMB光谱扭曲的高显着度测量可能会严格限制较少理解的Baryonic反馈过程。天空平均的综合失真及其相对论校正是可观察到的宇宙中电子总热能及其平均温度的度量。我们使用流体动力模拟的骆驼套件来探讨有关描述活跃银河核和超新星反馈的参数的可能限制,假设具有像素样测量。小型25 MPC/H骆驼盒由于显着的宇宙差异而面临挑战。我们利用机器学习通过嘈杂的仿真数据来构建插值器。使用Halo模型,我们将模拟Halo质量函数转换为校正因子,以减少需要的宇宙方差。我们的结果取决于子网格模型。在Illustristng的情况下,我们发现最确定的参数组合可以测量为〜2%,并且对应于AGN和SN反馈的产物。在Simba的情况下,最严格的约束约为AGN和SN反馈之间的比率约0.2%。第二个正交参数组合可以测量到〜8%。我们的结果表明,重大的约束功率A对延迟光谱失真单极的测量对于Baryonic反馈模型将具有。
High-significance measurements of the monopole thermal Sunyaev-Zel'dovich CMB spectral distortions have the potential to tightly constrain poorly understood baryonic feedback processes. The sky-averaged Compton-y distortion and its relativistic correction are measures of the total thermal energy in electrons in the observable universe and their mean temperature. We use the CAMELS suite of hydrodynamic simulations to explore possible constraints on parameters describing the subgrid implementation of feedback from active galactic nuclei and supernovae, assuming a PIXIE-like measurement. The small 25 Mpc/h CAMELS boxes present challenges due to the significant cosmic variance. We utilize machine learning to construct interpolators through the noisy simulation data. Using the halo model, we translate the simulation halo mass functions into correction factors to reduce cosmic variance where required. Our results depend on the subgrid model. In the case of IllustrisTNG, we find that the best-determined parameter combination can be measured to ~2% and corresponds to a product of AGN and SN feedback. In the case of SIMBA, the tightest constraint is ~0.2% on a ratio between AGN and SN feedback. A second orthogonal parameter combination can be measured to ~8%. Our results demonstrate the significant constraining power a measurement of the late-time spectral distortion monopoles would have for baryonic feedback models.