谷歌浏览器插件
订阅小程序
在清言上使用

Effects of neutrino mass and asymmetry on cosmological structure formation

JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS(2019)

引用 12|浏览10
暂无评分
摘要
Light but massive cosmological neutrinos do not cluster significantly on small scales, due to their high thermal velocities. With finite masses, cosmological neutrinos become part of the total matter field and contribute to its smoothing. Structure formation in the presence of massive neutrinos is therefore impeded compared to that in the standard Lambda CDM cosmology with massless neutrinos. Neutrinos' masses also distort the anisotropy power spectrum of cosmic microwave background (CMB). Furthermore, a finite chemical potential mu for cosmological neutrinos, still allowed by current data, would have a non-negligible impact on CMB and structure formation. We consistently evaluate effects of neutrino masses and chemical potentials on the matter power spectrum by use of a neutrino-involved N-body simulation, with cosmological parameters obtained from a Markov-Chain Monte-Carlo (MCMC) re fitting of CMB data. Our results show that while a finite averaged neutrino mass m(v) tends to suppress the matter power spectrum in a range of wave numbers, the neutrino degeneracy parameters xi(i) equivalent to mu(i)/T (i = 1, 2, 3) enhance the latter, leading to a large parameter degeneracy between m(v) and xi(i). We provide an empirical formula for the effects on the matter power spectrum in a selected range of wave numbers induced by m(v) and eta equivalent to root Sigma(i)xi(2)(i). Observing a strong correlation between m(v) and eta we propose a single redshift-independent parameter m(v) - 4/3 eta(2) to characterize the neutrino effects on the matter power spectrum.
更多
查看译文
关键词
cosmological neutrinos,cosmological simulations,cosmological parameters from CMBR,power spectrum
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要