论文标题
具有类似于轴的电势的超轻DM玻色子:重新审视规模依赖性约束
Ultralight DM bosons with an Axion-like potential: scale-dependent constraints revisited
论文作者
论文摘要
已经提出了具有三角电位的标量字段$ ϕ $来扮演暗物质的角色。对线性扰动的宇宙学演化的深入研究及其与冷暗物质(CDM)和模糊暗物质(FDM)病例(具有二次潜在的标量场)的比较,揭示了由于轴呈轴呈轴呈潜能的非线性线性,质量光谱的幅度增强了。我们首次研究了诸如生长因子$ d_k $,速度增长因子$ f_k $和$f_kσ_8$之类的物理量的规模依赖性。我们发现,对于$ z <10 $,所有这些数量都恢复了CDM的演变,而对于高红移,每个模型(FDM案例和类似轴的电势)之间都有明显的区别,具体取决于波数$ k $,以及轴轴基势的衰减参数。还重新审视了半分析光环质量功能,发现低质量光环的数量(如FDM情况),但由于轴突样电势的非线性,方差和光晕质量函数的幅度较小。最后,我们使用Planck Collaboration 2018和Lyman-$ lyman-$α$ Forest的数据对轴突质量和轴突衰减参数提出了约束。
A scalar field $ϕ$ endowed with a trigonometric potential has been proposed to play the role of Dark Matter. A deep study of the cosmological evolution of linear perturbations, and its comparison to the Cold Dark Matter (CDM) and Fuzzy Dark Matter (FDM) cases (scalar field with quadratic potential), reveals an enhancement in the amplitude of the mass power spectrum for large wave numbers due to the non-linearity of the axion-like potential. For the first time, we study the scale-dependence on physical quantities such as the growth factor $D_k$, the velocity growth factor $f_k$, and $f_k σ_8$. We found that for $z<10$, all these quantities recover the CDM evolution, whereas for high redshift there is a clear distinction between each model (FDM case, and axion-like potential) depending on the wavenumber $k$ and on the decay parameter of the axion-like potential as well. A semi-analytical Halo Mass Function is also revisited, finding a suppression of the number of low mass halos, as in the FDM case, but with a small increment in the amplitude of the variance and halo mass function due to the non-linearity of the axion-like potential. Finally, we present constraints on the axion mass and the axion decay parameter by using data of the Planck Collaboration 2018 and Lyman-$α$ forest.