论文标题

使用人工智能从WMAP和PLANCK从CMB温度各向异性图中检测偶极调制

Detection of Dipole Modulation in CMB Temperature Anisotropy Maps from WMAP and Planck using Artificial Intelligence

论文作者

Khan, Md Ishaque, Saha, Rajib

论文摘要

原始功率谱的旋转不变性的分解在观察到的宇宙微波背景(CMB)辐射的统计各向异性中表现出来。 CMB中半球形功率不对称可能是由于偶极调节引起的,表明存在首选方向。 CMB温度各向异性数据的适当重新缩放的局部方差图有效地封装了这种偶极模式。作为一种首要方法,我们训练具有局部差异的人工神经网络(ANN),例如输入特征,以区分统计上各向同性的CMB图和偶极调制的差异。我们训练有素的ANN能够预测振幅时间的组成部分,即混合的调制和未调制地图的首选方向的单位矢量,适合($ r^2 $)得分为$> 0.97 $,全天空$> 0.96 $> 0.96 $。在所有观察到的前景清洁的CMB图上,ANN检测到具有振幅和方向的总体一致值的偶性调制信号。该检测显着为$ 97.21 \%-99.38 \%$ c.l.对于所有完整的天空地图,$ 98.34 \%-100 \%$ c.l.适用于所有部分天空图。信号的鲁棒性遍及整个天空,各种前景清洁方法,介入算法,工具以及Planck和WMAP卫星的所有不同观察期。除了振幅和方向值的一致性之外,对信号的显着检测(与任何先前存在的方法无关),进一步减轻了对CMB中首选偶极方向的审查效果的批评和后验推断。

Breakdown of rotational invariance of the primordial power spectrum manifests in the statistical anisotropy of the observed Cosmic Microwave Background (CMB) radiation. Hemispherical power asymmetry in the CMB may be caused due to a dipolar modulation, indicating the presence of a preferred direction. Appropriately re-scaled local variance maps of the CMB temperature anisotropy data effectively encapsulate this dipolar pattern. As a first-of-its-kind method, we train Artificial Neural Networks (ANNs) with such local variances as input features to distinguish statistically isotropic CMB maps from dipole modulated ones. Our trained ANNs are able to predict components of the amplitude times the unit vector of the preferred direction for mixed sets of modulated and unmodulated maps, with goodness of fit ($R^2$) scores $>0.97$ for full sky, and $>0.96$ for partial sky coverage. On all observed foreground-cleaned CMB maps, the ANNs detect the dipolar modulation signal with overall consistent values of amplitudes and directions. This detection is significant at $97.21\%-99.38\%$ C.L. for all full sky maps, and at $98.34\%-100\%$ C.L. for all partial sky maps. Robustness of the signal holds across full and partial skies, various foreground cleaning methods, inpainting algorithms, instruments and all the different periods of observation for Planck and WMAP satellites. The significant and robust detection of the signal, in addition to the consistency of values of amplitude and directions, as found independent of any pre-existing methods, further mitigates the criticisms of look-elsewhere effects and a posteriori inferences for the preferred dipole direction in the CMB.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源