论文标题
深色物质中微子相互作用的完整Boltzmann层次结构
The full Boltzmann hierarchy for dark matter-massive neutrino interactions
论文作者
论文摘要
过去,在无质量的中微子的背景下,已经研究了暗物质 - 中性相互作用对宇宙学参数测量的影响。在这里,我们通过实施三个巨大的中微子的完整玻尔兹曼层次结构来鉴于正在进行的宇宙学紧张局势,重新审视了中微子销事物耦合的作用。我们最紧密的95%Cl上限对相互作用的强度,通过$u_χ= \ frac {σ_0} {σ_{σ_{th}}} \ left(\ frac {m_χ} {100 \ text {gev}}}}} \ right)由Planck Ttteee数据,Planck镜头数据和SDSS BAO数据的组合引起的。正如预期的那样,由于与中微子质量相关的校正因子,这种上边界的相互作用略高于以前的结果。我们发现,这些交互在Planck数据的$λ$ CDM中明显放松了$σ_8$的值的下限,这导致在1-2 $σ$之间达成协议,而较弱的镜头估计为$σ_8$,如KIDS-1000。但是,这些交互的存在几乎不会影响哈勃常数$ H_0 $的价值。
The impact of dark matter-neutrino interactions on the measurement of the cosmological parameters has been investigated in the past in the context of massless neutrinos exclusively. Here we revisit the role of a neutrino-dark matter coupling in light of ongoing cosmological tensions by implementing the full Boltzmann hierarchy for three massive neutrinos. Our tightest 95% CL upper limit on the strength of the interactions, parameterized via $u_χ=\frac{σ_0}{σ_{Th}}\left(\frac{m_χ}{100 \text{GeV}}\right)^{-1}$, is $u_χ\leq3.34 \cdot 10^{-4}$, arising from a combination of Planck TTTEEE data, Planck lensing data and SDSS BAO data. This upper bound is, as expected, slightly higher than previous results for interacting massless neutrinos, due to the correction factor associated with neutrino masses. We find that these interactions significantly relax the lower bounds on the value of $σ_8$ that is inferred in the context of $Λ$CDM from the Planck data, leading to agreement within 1-2$σ$ with weak lensing estimates of $σ_8$, as those from KiDS-1000. However, the presence of these interactions barely affects the value of the Hubble constant $H_0$.