论文标题

F(R)修饰的重力宇宙学的物质功率模拟器

Matter Power Spectrum Emulator for f(R) Modified Gravity Cosmologies

论文作者

Ramachandra, Nesar, Valogiannis, Georgios, Ishak, Mustapha, Heitmann, Katrin

论文摘要

测试超出一般相对性(GR)的可行宇宙学模型的一部分,对宇宙加速度和与之相关的暗能量的影响是鲁宾天文台的时空遗产调查(LSST)及其努力的一部分。与GR-W(Z)CDM模型的偏差可能在结构和镜头的生长速率以及对非线性尺度的筛选效果中表现出来。我们通过使用COLA(Comoving Lagrangian加速度)模拟模拟该模型来探索由F(R)Hu-Sawicki修饰的重力(MG)候选者预测的小规模偏差的约束功率。我们介绍了宇宙学参数和跨红移中的实验设计,数据生成和插值方案,以模仿由于重力效应而导致的功率谱中的增强功能。模拟器的三个初步应用突出了对宇宙参数的敏感性,Fisher的预测和Markov Chain蒙特卡洛对基准宇宙学的推论。该模拟器将对未来的宇宙学分析发挥重要作用,该分析处理鲁宾天文台LSST预期的大量数据。

Testing a subset of viable cosmological models beyond General Relativity (GR), with implications for cosmic acceleration and the Dark Energy associated with it, is within the reach of Rubin Observatory Legacy Survey of Space and Time (LSST) and a part of its endeavor. Deviations from GR-w(z)CDM models can manifest in the growth rate of structure and lensing, as well as in screening effects on non-linear scales. We explore the constraining power of small-scale deviations predicted by the f(R) Hu-Sawicki Modified Gravity (MG) candidate, by emulating this model with COLA (COmoving Lagrangian Acceleration) simulations. We present the experimental design, data generation, and interpolation schemes in cosmological parameters and across redshifts for the emulation of the boost in the power spectra due to Modified Gravity effects. Three preliminary applications of the emulator highlight the sensitivity to cosmological parameters, Fisher forecasting and Markov Chain Monte Carlo inference for a fiducial cosmology. This emulator will play an important role for future cosmological analysis handling the formidable amount of data expected from Rubin Observatory LSST.

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