论文标题

宇宙双折射:带有CMB各向异性的跨光线和跨百形

Cosmic Birefringence: Cross-Spectra and Cross-Bispectra with CMB Anisotropies

论文作者

Greco, Alessandro, Bartolo, Nicola, Gruppuso, Alessandro

论文摘要

麦克斯韦电磁作用的奇偶校验延伸会在传播过程中引起光子线性极化平面的旋转。这种效果被称为宇宙双折射,会影响宇宙微波背景(CMB)观测值,产生了$ e $和$ e $和$ b $偏振模式的混合,在标准方案中否则为无效。这种效果是通过旋转角度自然参数化的,旋转角可以写入各向同性组件的总和$α_0$和各向异性一个$Δα(\ hat {\ mathbf {n}})$。在本文中,我们计算涉及$Δα$以及CMB温度和极化图的角功率谱和双光谱。特别是,与跨光谱发生的事情相反,我们表明,即使没有各向异性双折射角度和CMB图之间的原始互相关,也存在携带奇偶校验损坏物理学的签名的三点相关函数。此外,我们发现,这种角度双眼仍然可以在纯粹的各向异性宇宙双折射方面生存,这与保守的情况相对应,即具有$α_0= 0 $的保守案例。这些双光谱是旨在研究宇宙双折射及其均衡性侵略性的额外可观察性。它们还提供了一种对宇宙双折射的特定模型进行一致性检查的方法。此外,我们估计,在所有可能的双重双偏见中,$ \langleΔα\,tb \ rangle $和$ \langleδα\,eb \ rangle $是包含最大信号 - 噪声比率的$。一旦将宇宙双折射信号视为当前约束的水平,我们就表明这些双光谱是Litebird的未来CMB实验的范围。

Parity-violating extensions of Maxwell electromagnetism induce a rotation of the linear polarization plane of photons during propagation. This effect, known as cosmic birefringence, impacts on the Cosmic Microwave Background (CMB) observations producing a mixing of $E$ and $B$ polarization modes which is otherwise null in the standard scenario. Such an effect is naturally parametrized by a rotation angle which can be written as the sum of an isotropic component $α_0$ and an anisotropic one $δα(\hat{\mathbf{n}})$. In this paper we compute angular power spectra and bispectra involving $δα$ and the CMB temperature and polarization maps. In particular, contrarily to what happens for the cross-spectra, we show that even in absence of primordial cross-correlations between the anisotropic birefringence angle and the CMB maps, there exist non-vanishing three-point correlation functions carrying signatures of parity-breaking physics. Furthermore, we find that such angular bispectra still survive in a regime of purely anisotropic cosmic birefringence, which corresponds to the conservative case of having $α_0=0$. These bispectra represent an additional observable aimed at studying cosmic birefringence and its parity-violating nature beyond power spectrum analyses. They provide also a way to perform consistency checks for specific models of cosmic birefringence. Moreover, we estimate that among all the possible birefringent bispectra, $\langleδα\, TB\rangle$ and $\langleδα\,EB\rangle$ are the ones which contain the largest signal-to-noise ratio. Once the cosmic birefringence signal is taken to be at the level of current constraints, we show that these bispectra are within reach of future CMB experiments, as LiteBIRD.

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