论文标题
非线性扰动理论扩展Boltzmann代码类
Non-linear perturbation theory extension of the Boltzmann code CLASS
论文作者
论文摘要
我们提出了一个新的开源代码,该代码计算了物质字段的一环功率自动和跨功能光谱,以及在真实和红移空间中的有偏见的示踪剂。这些光谱包含直接应用数据所需的所有成分:非线性偏差,红移空间畸变,红外重新召集,反处理和Alcock-paczynski效应。我们的代码基于Boltzmann求解器类,并继承其优势:用户友好,易于修改,高速和与其他软件的简单接口。我们介绍了理论模型,代码结构,近似和准确性测试的详细描述。一个宇宙学的典型端到端运行需要$ \ sim 0.3 $秒,这足以容纳马尔可夫链蒙特卡洛参数提取。例如,我们将代码应用于BARYON振荡光谱调查(BOSS)和从星系功率谱的形状中推断宇宙学参数的数据。
We present a new open-source code that calculates one-loop power auto- and cross-power spectra for matter fields and biased tracers in real and redshift space. These spectra incorporate all ingredients required for a direct application to data: non-linear bias, redshift-space distortions, infra-red resummation, counterterms, and the Alcock-Paczynski effect. Our code is based on the Boltzmann solver CLASS and inherits its advantage: user friendliness, ease of modification, high speed, and simple interface with other software. We present detailed descriptions of the theoretical model, the code structure, approximations, and accuracy tests. A typical end-to-end run for one cosmology takes $\sim 0.3$ seconds, which is sufficient for Markov Chain Monte Carlo parameter extraction. As an example, we apply the code to data from the Baryon Oscillation Spectroscopic Survey (BOSS) and infer cosmological parameters from the shape of the galaxy power spectrum.