论文标题
星系数计数偶极子和超罐头波动
Galaxy number-count dipole and superhorizon fluctuations
论文作者
论文摘要
鉴于偶极子数量计数的偶极子各向异性之间的张力日益增长,宇宙远处的来源和宇宙微波背景(CMB)之间的张力,我们研究了由具有与当今哈勃半径相当的原始扰动引起的数量计数偶极子偶极子偶极子。首先,我们发现绝热和等效性超耐力模式都无法产生固有的数字计数偶极子。然而,超级乳头等化模式确实会诱导CMB和(Dark)物质静止框架之间的相对速度,从而影响CMB偶极子。我们重新审视由于这种模式而具有固有组件的可能性,因此,如果后者实际上是原始的运动学,则可以与星系数计数偶极子保持一致。尽管这种情况并不是特别自然,但可能与其他异常存在可能存在联系,它预测了同步的星系数计数四极杆,这可能在以后的调查中是可以测量的。我们还研究了小于哈勃半径的模式引起的数量计数偶极子,发现受CMB约束的约束,这太小而无法调和偶极张力。
In view of the growing tension between the dipole anisotropy of number counts of cosmologically distant sources and of the cosmic microwave background (CMB), we investigate the number count dipole induced by primordial perturbations with wavelength comparable to or exceeding the Hubble radius today. First, we find that neither adiabatic nor isocurvature superhorizon modes can generate an intrinsic number count dipole. However a superhorizon isocurvature mode does induce a relative velocity between the CMB and the (dark) matter rest frames and thereby affects the CMB dipole. We revisit the possibility that it has an intrinsic component due to such a mode, thus enabling consistency with the galaxy number count dipole if the latter is actually kinematic in origin. Although this scenario is not particularly natural, there are possible links with other anomalies and it predicts a concommitant galaxy number count quadrupole which may be measurable in future surveys. We also investigate the number count dipole induced by modes smaller than the Hubble radius, finding that subject to CMB constraints this is too small to reconcile the dipole tension.